
HOCIntelligentTechnology US/UK/Canada/Germany/china/Japan
High-tech ICT×SDGs company cutting-edge science
and technology research and development
Digital
Making the most of data, algorithms, automation
and networks, we create new value
In-house R & D specialty area products
Robots, medical health IOT products, manufacturing
AI engines, autonomous driving, ERP x DX, AI cameras,etc
Keywords
Coronavirus Digitization / DX AI IoT Blockchain Security
UI / UX Big Data Data Democratization Technology
Foresight Financial Medical / Healthcare Manufacturing
HOCIntelligentTechnology China

Cutting-edge technology
AI, IOT, 5G, Blockchain, Quantum computing, ERP, EC, DX, XR, RPA, 5G, etc.
Artificial intelligence, semiconductors, 5G, quantum information science, biotechnology and green energy
Bio Technologies
- Healthcare
- Medical Technologies
- User Interface
- Design methodologies
- Welfare Technologies
- Enabling Devices and Technologies
Academic honor
A.M.TURING Award, IEEE Award, Nobel Prize, etc.










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As a network-type science and technology R & D corporation that conducts world-class research and development, we will lead ICT companies in future co-creation innovation that promotes SDGs. We will open up a prosperous future by developing and providing cutting-edge science and technology products with high quality and unique technology by creating and supporting bases in the United Kingdom, Canada, US, Germany, Japan, and China together. For our company, whose products are attracting worldwide attention, we are helping to develop products with cutting-edge technology. Utilizing the technology and know-how that has been built up at Cambridge University, MIT University oxford University, Harvard University, Dresden University of Technology, Tokyo University, Osaka University, etc., we have been working on high quality and original technology development. In order to provide safe and convenient products, we have obtained many patents related to DX BioNTech cutting-edge technology and development such as AIoT 5G blockchain quantum computing XR, AR, VR, etc., and will continue to be an "ICT company" ICT area (main area: Fintech, Communication [AR / VR], Security, Media Content, Bigdata, Cloud, IoT / Drone, Marketing / Advertising, Medical Healthcare, Robotics, Power / Battery, AI, Enterprise, Education New Energy Industry (Battery Related) Battery (Battery Related) , Hydrogen, fuel cells, etc.) and battery materials / components, etc.) We will continue to develop and evolve as SDGs business creation and development. Research and development corporation by research field (environment / energy, life science, system / information science and technology, nanotechnology / materials), hardware / software development using cutting-edge technology, demonstration experiments, research / development / operation of prototype products. Sales, cutting-edge technology R & D research field (cluster) "Future society / future technology (social implementation of Society 5.0)" "Next-generation food and planting" "Environment / energy / regeneration" "Health / longevity / development" " Creation of knowledge "e-sports construction DX sports DX, etc.





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Climate change measures decarbonization



Research and Development (R & D) arms of the Department of Science and Technology that focuses on ICT and Microelectronics
Institute for advanced science and technology
Laboratory for Systems Biology and Medicine, Research Center for Advanced Science and Technology
Advanced Institute of Science and Technology
Laboratory of Advanced Science and Technology
most-advanced science and technology
cutting-edge technology "advanced technology","cutting-edge science and technology" advanced research "advanced research"pioneer . frontier " unexplored area" hi-tech "advanced technology", "high technology" hi-tech research "advanced technology research"






ScienceandTechnologyCompny
List of our partners
Scientific Research Japan Atomic Energy Agency (JSPS), Science and Technology Agency (JST) Industry Japan Atomic Energy Agency (JAEA), Aerospace Research and Development Organization (JAXA), Ocean Research and Development Organization, and former National Institute for Testing and Materials・ Materials Research Organization (NIMS), National Institute of Radiological Sciences (currently part of National Institutes for Quantum and Radiological Science and Technology), Disaster Prevention Science and Technology Research Institute
National University Corporation: Tohoku University, University of Tokyo, Kyoto University,
Tokyo Institute of Technology, Nagoya University, Osaka University, Hitotsubashi University, etc.
New Energy and Industrial Technology Development Organization (NEDO) Japan Agency for Medical Research and Development (AMED Material and Materials Research Organization, RIKEN, etc., NTT, NTTDATA, TOYODA, etc.
We will open up a prosperous future by developing and providing cutting-edge science and technology products with high quality and unique technology by creating and supporting bases in the United Kingdom, Canada, the US, Germany, Japan, and China. We support research and demonstration experiments that utilize cutting-edge technologies such as AI (application of face recognition and deep learning), plan services and products in new technology areas, and demonstrate concept models. Industry-academia-government collaboration "Research and research in the field of advanced technology that connects advanced technology and business System consulting solution service Product solution We support companies that do their best to overcome the corona disaster!
URL: https://www.nekkyo.org/
https://www.oxhabridge.com/
https://www.nekkyoai.com/
https://www.hocintelligenttechnology.com/
HOC Intelligent Technology Co., Ltd. Osaka Headquarters Management Headquarters
4-9-35 Shuntoku-cho, Higashi-Osaka-shi, Osaka 577-0831
TEL 090-8747-9395 06-67538862
5 minutes walk from Kintetsu Fuse Station in Osaka City
R & D Center
3-15-18 Yokonuma-cho, Higashi-Osaka-shi, Osaka 577-0808
TEL 06-6720-8749 FAX 06-6720-8749
(Monday-Friday 10: 00-18: 00 * Excluding holidays and year-end and New Year holidays)
yuhong268@gmail.com info@nekkyoai.com
Osaka branch office
3-1 Ofuka-cho, Kita-ku, Osaka 530-0011
Grand Front Osaka Knowledge Capital Tower C 7th floor
Close to Nagoya branch office Nagoya station
Tokyo Branch HOC Intelligent Technology Co., Ltd. Tokyo Branch 03-6404-8082. 2 minutes walk from Omorikaigan Station on the Keikyu Line, 3-20-5 Minami-Oi, Shinagawa-ku, Tokyo 140-0013 8 minutes walk from the north exit of JR Omori Station
group company
State-of-the-art Technology Research Institute Co., Ltd.
4-9-35 Shuntoku-cho, Higashi-Osaka-shi, Osaka 577-0831
TEL 090-8747-9395 06-67208749
China local subsidiary Niuqiao Intelligence Technology Co., Ltd. High-tech company Nanjing, Shanghai, Hangzhou, Shenzhen, China, and other R & D centers and factories in Shenzhen, Taiwan, Hong Kong)
邮 KEN 210094 No. 17 Star Fire Road, Gangbuk New District, Nanjing City, China 801 Room-845
Room 801, Chuangzhi Building, No. 17 Xinghuo Road, Jiangbei New District, Nanjing, China
China Tel. 86 15358411774 1500467340@qq.com
UK subsidiary HOC Intelligent Technology
5 New Street Square, London EC4A 3TW, UK
US subsidiary HOC Intelligent Technology
Mountain View Amphitheater Parkway 160, California, USA)
Canadian subsidiary HOC Intelligent Technology
German subsidiary HOC Intelligent Technology
Living / Health Health / Medical / Welfare Culture / Art / Internationalization / Sports / Recreation / Collaboration / Community



Advanced science and technologyDNA
By field (environment / energy, life science, system / information science and technology, nanotechnology / materials)
Realization of "ultra-smart society" (Society 5.0), "11 systems" that are said to be advanced toward its realization include "promotion of community-based comprehensive care system", "smart food chain system", "smart" "Production system" is included. In addition, among the issues that should be strategically resolved, there are several related matters such as stable food security, formation of a healthy and long-lived society by realizing the world's most advanced medical technology, and improvement of competitiveness in manufacturing and manufacturing. It has been. Regarding the above-mentioned research and development related to "formation of a healthy and long-lived society by realizing the world's most advanced medical technology", based on the health and medical strategy and the medical field research and development promotion plan under the Health and Medical Strategy Promotion Headquarters. ,
The following nine main initiatives will be promoted as pillars. In addition, in other fields such as infectious disease control
We will promote international contributions, build a medical ICT infrastructure, and improve the environment for utilization.
All-Japan drug creation
All-Japan medical device development
Innovative medical technology creation base project
Realization of regenerative medicine Highway concept
Genome medical realization project for overcoming diseases
Japan Cancer Research Project
Brain and Mental Health Powerhouse Realization Project
Emerging and re-emerging infectious disease control project
R & D bird's-eye view report
R & D strategies of major countries (2020)
CRDS-FY2019-FR-02 National Research and Development, Japan Science and Technology Agency Research and Development Strategy Center
Intractable disease overcoming project
System / Information Science and Technology Field The information science and technology field has been positioned as a common basic technology that supports green innovation, life innovation, and strengthening of industrial competitiveness. In addition, as science and technology that can be used across multiple fields and science and technology in the fusion field, nanotechnology, optical / quantum science and technology, advanced information and communication technology such as simulation and e-science, mathematical science, and system science. Promotion of technology research and development is mentioned, and as a concrete initiative, basic technology required for ultra-smart social service platform
As strong as cyber security, IoT system construction, big data analysis, AI, devices, etc.
Strong robots, sensors, light, quantum, etc. as basic technologies that will be the core of technology and new value creation
It is going to be changed. The four pillars are (1) social implementation of Society 5.0, (2) strengthening of research capabilities centered on basic research, (3) drastic strengthening of international cooperation, and (4) construction of priority strategies in cutting-edge and important fields such as AI technology and quantum technology. Was included. Nanotechnology / Materials field “Nanotechnology / Materials” is one of the four priority promotion fields, and resource allocation has been focused on for 10 years along with life sciences, information and communications, and the environment. The main achievements were as follows. "Discovery of new superconducting materials including iron", "Progress in development of various materials leading to practical use including carbon fiber composite materials", "Progress in research on molecular imaging", "National core technology" X-ray
Development of R & D infrastructure such as "free electron laser" and "nanotechnology network", "Oh
Industry-academia-government collaboration by Pun Innovation Center "Tsukuba Innovation Arena" (TIA-nano)
"Strengthening", "Ministry collaboration project:" Element strategy project "(Ministry of Education, Culture, Sports, Science and Technology) and" Rare metal alternative materials
"Project" (Ministry of Economy, Trade and Industry) steady progress ", etc. In the 4th term (2011-2015), 11 systems that contribute to the realization of "super smart society" (Society 5.0) of the Institute of Physical and Chemical Research were identified from the priority area type of science and technology, and "Society 5.0" was identified as one of them. Integrated Material Development System ”Overview Report of Research and Development
R & D strategies of major countries (2020)
CRDS-FY2019-FR-02 National Research and Development, Japan Science and Technology Agency Research and Development Strategy Center
There are 28. To promote the creation of innovative functional materials, structural materials, etc. that make full use of computational science and data science.
In addition, with the goal of significantly shortening the development period, we are aware of the problem that nanotechnology and materials science and technology must continue to play a major role in the realization of Society 5.0 and SDGs. In August 2018, the Nanotechnology and Materials Science and Technology Committee of the Research Planning and Evaluation Subcommittee of the Science and Technology Council of the Ministry of Education, Culture, Sports, Science and Technology announced the "Social Revolution by Materials" that contributes to both industrial promotion and "happiness" of humankind. The "Nanotechnology / Materials Science and Technology Research and Development Strategy" was announced with the goal of realizing "(Materials Revolution)".
(3) Research infrastructure policy in the field of nanotechnology and materials
Tip. We provide cutting-edge research equipment and technical support to industry-academia-government users in three technical areas (microstructure analysis, microfabrication, and molecular / substance synthesis). It is operated by 38 institutions nationwide, including 11 institutions for microstructure analysis, 16 institutions for microfabrication, 10 institutions for molecular / substance synthesis, and a center agency responsible for overall coordination of the entire business. In addition, in collaboration with JST's ALCA next-generation storage battery project, the National Institute of Advanced Industrial Science and Technology will be in Tsukuba, where cutting-edge nanotechnology research facilities and human resources, which consist of three institutions, will be concentrated.
The National Institute for Materials Science, University of Tsukuba, High Energy Accelerator Research Organization, and the University of Tokyo play a central role in Japan.
In collaboration with the Japan Business Federation (Keidanren), a global R & D and open innovation base TIA
It is forming (from 2009). At TIA, 1. Creating Global Value, 2. Under One Roof, 3. Independence
A virtuous cycle, 4. Win-Win cooperation network, 5. Next-generation human resources development, with five principles, cooperation network with companies and universities
As a fusion base open to industry, academia and government, we will promote the industrialization of nanotechnology and human resource development in an integrated manner by promoting AI, quantum information science (QIS), and computing-based QIS, and develop and strengthen human resources. Plan and pull the industry
Prioritize research and development that provides the infrastructure that supports QIS. Sustainable and interoperable software, data maintenance and curation, and adequate security to support the research and development needed for future high-performance computing paradigms, manufacturing, devices, and architecture. Biomedical Opioid Crisis Fighting, Rapid Detection and Containment of Infectious Diseases, Drug Resistance, Prevention and Treatment of Chronic Diseases, Genetic Therapy, Neuroscience, Medical Measures and Public Health Preparation, HIV / AIDS Eradication, and More Prioritize R & D investment aimed at improving the independence, safety and health of the elderly and people with disabilities in the United States. Rapidly establish safety and efficacy for products developed using bioeconomy gene editing, adopting biotechnology products and social responsibility
Prioritize evidence-based criteria and research to promote certain uses ① "All of Us" research program (cohort study for personalized medicine)
② BRAIN (Brain Research through Advancing Innovative Neurotechnologies) Initiative
③ Cancer Moonshot
(4) Regenerative Medicine Innovation Project PCA in 2021 is also planned to be in these 11 areas.
① Artificial intelligence (AI)
② Computing for human interaction, communication, and ability improvement
(CHuman)
③ Computing (CNPS) to network physical systems
④ Cyber Security and Privacy (CSP) Education and Human Resources (EdW)
⑥ Research and development of high-capability computing system (EHCS)
⑦ High Capability Computing Infrastructure and Applications (HCIA)
⑧ Intelligent Robotics and Autonomous System (IRAS)
⑨ Large-scale data management and analysis (LSDMA)
⑩ Large-scale network (LSN)
⑪ Software productivity / sustainability / quality (SPSQ)
Innovative Medicines Initiative (IMI) 2 Innovative Medicines 30
Electronic Components & System Initiative (ECSEL) Electronic Components & Systems 50
Clean Sky (CS) 2 Air and Air Transport 40
Fuel Cells and Hydrogen (FCH) 2 Hydrogen / Fuel Cell 13.3
Shift2Rail European single rail network 9.2
Bio-based Industries (BBI) Bio-based materials and biorefining 37
Single European Sky ATM Research (SESAR) Air Traffic Management Systems, Engineering and Physical Sciences Research Council (EPSRC), Economic and Social Research Council (ESRC), and Arts and Humanities Research Council (AHRC) provide research funding Is doing only. Medical Research Council (MRC), Biotechnology and Biological Science Research Council (BBSRC), Nature
The Environmental Studies Council (NERC) not only provides research funding, but also has a research organization under its umbrella to carry out research on its own.
Giving. The Science and Technology Facility Council (STFC) manages and operates research facilities in addition to providing research funding.
ing. UKRI's 2019 budget for the study council is approximately £ 3.81 billion, using artificial intelligence (AI), data and innovation to prevent disease, diagnose early, and treat chronic illness until 2030. By 2035, at least five years longer than it is now, closing the gap between the rich and the poor
Clean growth that enables people to lead healthy and independent lives By 2030, at least halve the energy use of new buildings by 2030 Establish at least one low-carbon industrial cluster by 2040 Establish the world's first industrial cluster with zero net greenhouse gas emissions
Future Transport Means Putting the UK at the forefront of zero-emission vehicle (ZEV) design and manufacturing, 2040
Ideas for virtually zero emissions of all new cars and trucks by the year
・ Increase overall R & D investment to 2.4% of GDP by 2027
・ Increased R & D tax credit ratio to 12%
· Invested £ 725m in the Industrial Strategy Challenge Fund (ISCF)
Human resources (People)
· Invested £ 406m to promote education in STEM capabilities
・ Established a national retraining system for digital fields, etc., building technology and digital
£ 64m investment in technical training
Infrastructure
-Increased the National Fund for Productivity Investment (NPIF) to £ 31 billion, transportation, housing construction,
Promote investment in fields such as digital
· Electric vehicle (EV) support (£ 400 million in charging infrastructure investment and £ 100 million
Includes plug-in car grants)
-Invested over £ 1 billion to develop digital infrastructure (100 million for 5G)
(Including £ 76m, etc.)
Business environment
・ Start and exhibition of sector agreement (government-industry alliance for the purpose of improving productivity)
Open (as of December 2019, Space, Artificial Intelligence, Automotive, Construction, Creative Industries, Rye
Agreements with 10 sectors of science, nuclear, offshore wind, rail and tourism)
· Invest over £ 20bn in innovative, high-potential businesses
・ Small and medium-sized companies, such as how to deal with the so-called "long tail" of low-productivity companies
Conducting reviews to improve corporate productivity, etc.
Formulation of regional / regional industrial strategy
・ Launched “Urban Reform Fund” for intercity transportation and invested £ 1.7 billion
・ Launched “Teacher Development Program” and invested £ 42 million in environment and energy
UK Energy Research Center (UKERC) London (Research bases are located throughout the country)
Founded in 2004. Sustainable future energy system Conducted world-class research on It is a hub for energy research in the UK and a contact point for connecting energy research communities in the UK and abroad. It is subsidized by one of the cross-research council programs, the Energy Program for the Low Carbon Future. Life Sciences European Molecular Biology Laboratory (EMBL-EBI) Hinxton (Cambridgeshire) Established in 1992 as a division of the European Molecular Biology Laboratory (EMBL). We provide databases and conduct research related to bioinformatics. Most of the operating funds are contributed by the governments of EMBL member countries, mainly EU countries. Information Science and Technology Cambridge University Computer Laboratory Cambridge Founded in 1937. An organization at the University of Cambridge that conducts a wide range of research in areas such as computer science, engineering, technology, and mathematics. Nanotechnology and Materials Cavendish Laboratory, University of Cambridge Cambridge Founded in 1874. Institute of Physics, University of Cambridge. So far, 29 Nobel laureates have been produced. Francis Crick
James Watson discovered the double helix structure of DNA when he was at the institute, and in 1962 he won the Medical Physiology Award to improve the effectiveness of cancer treatment and strengthen cancer research to extend the lifespan of cancer patients. To do. prevention,
Improve early detection, diagnosis and treatment. Promote the digitization of patient charts and the associated strengthening of data protection. Introduce an electronic medical record system to university hospitals in Germany by 2025. Promote plant-derived plastic production by 2025 to reduce plastic waste
Or develop substances that can be efficiently recycled, and have similar challenges.
Promote research and development by collaborating with other regions.
Aim for CO2 emissions of about 85-90% in 1990 to realize the environmental protection plan 2050
It points to the improvement of production processes and the realization of a sound-cycle economy.
Creating innovative business models through efficient resource use and digitalization
Increase productivity with.
Conduct environmental assessments using innovative tools and new indicators to protect diverse species.
This area is the beginning of major innovations such as autonomous driving, electric vehicles and fuel cell vehicles.
It has been placed. Comprehensive including charging facility development, deregulation, EU policy, etc.
Implement practical measures.
Support technology development and supply chain construction for battery production in Germany.
Use the power of digital to bridge the gap between cities and regions due to changes in economic structure and demographics, and create an environment
Improve quality of life in a thoughtful manner.
With concerns about labor shortages due to the aging of the population, assistant systems and
Use robots to reduce the burden of labor. Robo in society, including safety and health
Implement comprehensive measures such as acceptance of
② Mission in future technology
With Germany and Europe as bases for AI research and development and practical application, while securing human resources
Build an AI-based business model by involving various application areas.
③ Mission in creating an open innovation environment and entrepreneurial culture
Open access, open science, open data, open inno
Contribute to the creation of the latest science through the principle of vation. Priority technology areas
Goal Priority technology
Research with an eye on social implementation and application
Machine learning, big data
Cyber security, HMI, robots, VR
Communication system, 5G communication technology
Batteries, 3D printing, weight reduction, manufacturing technology
Technology that should leap to the top of the world
Quantum simulation system, ultra-precision measurement technology, imaging
Technology
Biotechnology, bioinformatics
Aerospace satellites, materials ARENA2036 Stuttgart Great transformable automotive research
DPP RWTH Aachen University Digital Optics
Mobility2Grid Berlin Institute of Technology Smart Grid
FEN RWTH Aachen University Environmentally friendly energy
185 Cluster-Netzwerke-International
186 German name: Forschungscampus
R & D bird's-eye view report
R & D strategies of major countries (2020)
CRDS-FY2019-FR-02 National Research and Development, Japan Science and Technology Agency Research and Development Strategy Center
124
MODAL Humboldt Large Data Driven Transport / Medical Technology
M²OLIE Heidelberg Cancer Treatment
Open Hybrid LabFactory Braunschweig Institute of Technology Lightening research on vehicle materials
STIMULATE Magdeburg minimally invasive treatment
InfectoGnostics University of Jena Second Generation Quantum Computing (Computer, Simulation) as a priority area for early diagnosis of infectious diseases
Ration, etc.), Quantum communication (communication, security technology, etc.), measurement (precision measurement technology, etc.)
In addition to the development of technology, satellites, navigation technology, etc.), technology transfer in the quantum field and promotion of industrial participation
I'm sick. Autonomous driving, electric and fuel cell vehicles to solve social issues under "High-Tech Strategy 2025"
However, this area is at the beginning of major innovation. Maintenance of charging facilities, deregulation of laws and regulations,
In Germany, as a comprehensive practical measure including EU policy and a mission in the field of future technology
In addition, we will make Europe a base for R & D and practical application of AI, and involve various application areas while securing human resources.
Health, environment, and society that are shown to build an AI-based business model by doing so
Health / Digital
Digital humanity
Social / digital security
Digital, energy, environment, society
The 2020 plan also includes the following national priorities:
Artificial intelligence
Humanities and Social Sciences
Quantum technology
Drug resistance
Autism in neurodevelopmental disorders
Parallel research on rare diseases, La
Excellent based on technologies such as if science, environment / energy, ICT, and nanotechnology
The feature is that the above items are organized.
Humanities / Society, Earth System / Environmental Science, Energy, Biology / Medical Science, Materials Science / Engineering, Astronomy / Astronomical Physics, Nuclear / High Energy Physics, ICT / Mathematics, Science / Technical Information While identifying 99 concrete infrastructures, it shows the direction of support. The identified infrastructure covers the fields of global systems / environmental science and biology / medical care.
There are relatively many, with 25 and 24 infrastructures specified, respectively. Humanities / Society, Earth System / Environmental Science, Energy, Biology / Medical Science, Materials Science / Engineering, Astronomy / Astronomical Physics, Nuclear / High Energy Physics, ICT / Mathematics, Science / Technical Information While identifying 99 concrete infrastructures, it shows the direction of support. The identified infrastructures are relatively large in the fields of global systems / environmental science and biology / medical, with 25 and 24 infrastructures designated, respectively. A National Natural Science Fund Committee (NSFC272), the China Science and Technology Development Strategy Research Institute (CASTED273), which is a think tank for science and technology policy, and the China Science and Technology Information Institute (ISTIC274), which is responsible for building science and technology information infrastructure, are located. ing. In addition, the Chinese Academy of Sciences is under the direct control of the State Council, with 104 research institutes and two National Natural Science Foundations of China (NSFC).
Various programs including subsidies for basic research and applied research, human resource development, and base formation (under the jurisdiction and management of the National Natural Science Fund Committee under the Ministry of Science and Technology) National Science and Technology Problem-solving program for improving national competitiveness (under the jurisdiction of the State Council) National Key R & D Program National Key R & D Program of China
A program that consolidates problem-solving research funding from each ministry and agency
(Specialized research fund under the initiative of the Ministry of Science and Technology
Management and operation by the science agency 283)
④ Technology innovation guidance plan
Technology Transfer Program
⑤ Research base and human resources program
Base Kazuto Talented Research Center Grants and Human Resources Grants Program
Creation of new superiority through industrial technology system for promotion and development of ram innovation
(1) Next-generation information network technology, (2) Smart green manufacturing technology, (3)
Modern agricultural technology, ④ Modern energy technology, ⑤ Resource efficient use and environment
Protection technology, ⑥ Marine and space technology, ⑦ Smart city digital social technology
Art, ⑧ Health technology, ⑨ Modern service industry technology, ⑩ Industrial transformation technology Science and technology critical project
Implementation (a project that the government provides stable support over the long term)
(1) Research and development of large aircraft engines and gas turbines (2) Deep sea stays
Research ③ Quantum communication and quantum computer research ④ Brain science and brain
Research (Brain Science and Brain-Inspired Intelligence Technology)
⑤ National cyber security research ⑥ Space exploration and orbital maintenance system
Research ⑦ Voluntary breeding technology ⑧ Coal clean and highly efficient utilization technology
⑨ Smart grid technology ⑩ Top-and-bottom integrated communication network technology (satellite communication and terrestrial broadcasting)
Communication integration) ⑪ Big data technology ⑫ Intelligent manufacturing and robot
Technology ⑬ Research and development and application of new materials ⑭ Hebei Regional Comprehensive Environmental Conservation
⑮ Health and welfare technology
International competitiveness of industrial technology
Improvement
(1) Advanced agricultural technology (2) Next-generation information and communication technology (3) Advanced manufacturing technology (4) New materials
Fee technology ⑤ Green and highly efficient energy technology ⑥ Advanced transportation technology ⑦
Advanced biotechnology ⑧ Advanced food manufacturing technology ⑨ For evolution of business model
Service technology that contributes ⑩ Disruptive technology that contributes to the Industrial Revolution
Improving and maintaining the standard of living
Technology system that can be continuously developed
Build
(1) Environmental and ecological conservation technology (2) Highly efficient use of resources (3) For national welfare
Contribution technology ④ Technology related to urbanization ⑤ Technology related to public safety
Techniques related to national security and national interests
Construction of surgical system
(1) Marine resource utilization technology (2) Space exploration / space development technology
③ Ultra-deep stratum development technology
Strengthening basic research ・ Strategic basic research for social needs
① Genetic improvement of living things in agriculture ② Green use of energy
Physics / Chemistry Theory for High Efficiency ③ Information for Man-Machine Fusion
Information and communication technology ④ Integrated monitoring research of the earth system ⑤ New materials
⑥ Extreme environment (large current, strong magnetic field, ultra-high)
Manufacture in (warm / ultra-low temperature) ⑦ Disasters caused by mega-projects and their
R & D bird's-eye view report
R & D strategies of major countries (2020)
CRDS-FY2019-FR-02 National Research and Development, Japan Science and Technology Agency Research and Development Strategy Center
180
⑧ Mechanical problems related to aircraft, rockets, and spacecraft ⑨ Medical immunity
Gaku
・ Advanced basic research
(1) Nanoscience technology (2) Quantum control and quantum information (3) Tan
Control of protein complex and life process ④ Stem cell research and clinical transition
Stagflation ⑤ Advanced research by a large research facility ⑥ Global spirit
Weather fluctuations and countermeasures ⑦ Interaction between heredity and environment in development ⑧ Synthetic organisms
Studies ⑨ Genome editing ⑩ Research on deep sea, ultra-deep strata, and space ⑪ Material depth
Layered structure and astrophysics research ⑫ Mathematics and applied mathematics ⑬ Magnetic confinement Nuclear fusion As priority fields, next-generation information and communication technology, advanced digital control machine tools and robots, aviation / U
Air equipment, marine construction machinery / high-tech vessels, advanced track transportation equipment, energy-saving / new energy vehicles,
The Chinese Academy of Sciences, Tsinghua University and Beijing University have set up the National Nanoscience Center of China, which lists electric power equipment, agricultural machinery equipment, new materials, biopharmaceuticals and high-performance medical equipment.
Our center is located on the premises of the Institute of Chemistry, Chinese Academy of Sciences, and is used for nanodevices, nanomaterials, and raw materials for nanomaterials.
Body effects and safety assessment, nano characterization, nano standardization, nano manufacturing
Labs such as Hold. Industrial informatization that controls the software industry, etc.
Department, Ministry of Science and Technology, Chinese Academy of Sciences, etc.
Policy trends include the medium- to long-term plan, strategic outline, and "scientific technology" mentioned at the beginning of this section in technological development.
An important policy is set out in "The 13th Five-Year Plan for Art Innovation". In this plan, the national critical science
"Quantum communication and quantum computer" and "National cyber seki" listed in the item of technology project
"Urity", "Tenchi integrated communication network", "Next-generation information communication" listed in the item of international competitiveness of industrial technology
"Technology", "Disruptive technology that contributes to the industrial revolution such as big data and AI", "Quantum control and quantum information" technology
is there.
From the perspective of industrial promotion, "Made in China 2025" and "Internet" announced by the State Council in July 2015.
Baidu (Baidu, Baidu, the company that provides the largest search engine in China) such as "T +" and "13th Five-Year Strategic Emerging Industry Development Plan" announced in November 2016
Build a national next-generation artificial intelligence open innovation platform
(2) Alibaba Cloud, a company under the Alibaba Group, the largest cloud service in China
By "Urban Brain" (Smart City Computational Center)
Build a national next-generation artificial intelligence open innovation platform
③ "Medical image recognition" by Tencent Co., Ltd. National next-generation artificial intelligence open innovation
Build a platform
④ Kadai Hibi Co., Ltd. (IFlytek, an artificial intelligence company in the field of speech recognition and speech synthesis established in 1999)
By "Smart Voice" National Next Generation Artificial Intelligence Open Innovation Platform
To build
⑤ "AI image processing technology" by the commercial hot spring group (SenseTime) National next-generation artificial intelligence open inno
Quantum communication / quantum computing technology to build a vation platform Nanotechnology / materials field Aerospace, orbital transportation, electronic equipment, new energy
Supplying new materials that meet the needs of industries such as motor vehicles, "C
Endo general-purpose semiconductor chips and basic software, "Very Large Scale Integration (VLSI) and software"
"Russet technology", "High-end computer, numerically controlled machine tool (CNC) and basic manufacturing technology"
Work
And autonomy
Operational standards, integrated methods, traffic management systems, defense / security luck
Deployment of autonomous driving means on the ground, in the air, and at sea, with an emphasis on development for
Prioritize R & D to lower barriers to
Advanced Manufacturing Smart Digital Manufacturing Technology, Advanced Industrial Robotics, Especially
Realized by the Internet of Things (IOT), machine learning, and AI
Research Institute, Japan Atomic Energy Agency (JAEA), Japan Aerospace Exploration Agency (JAXA), Japan Agency for Marine-Earth Science and Technology,
In addition, the former National Institute for Materials Science (NIMS) and the National Institute of Radiological Sciences (currently Department of Quantum)
The National Research Institute for Earth Science and Disaster Prevention was positioned as a part of the Academic Technology Research and Development Organization). In addition, Grants-in-Aid for Scientific Research
Japan Society for the Promotion of Science (JSPS), an independent administrative agency responsible for the distribution of money and international exchange in the academic field, and science and technology
Fundy such as Japan Science and Technology Agency (JST) 3 that implements various projects that contribute to the creation of novation
There is an institution. Regarding national university corporations, part of the National University Corporation Law has been amended 4.
The world's highest level of education and research activities in order to significantly improve the level of education and research and create innovation.
The Minister of Education, Culture, Sports, Science and Technology points to a national university that operates a university based on high-level goal setting so that the movement will be developed.
The "designated national university system" to be established was launched in 2017, and is currently available at Tohoku University, the University of Tokyo, Kyoto University, etc.
Seven schools, Tokyo Institute of Technology, Nagoya University, Osaka University, and Hitotsubashi University, have been designated. In addition, science and technology
Ministry of Education, Culture, Sports, Science and Technology as a national research institute that conducts research on policy and science and technology innovation
The National Institute of Science and Technology Policy (NISTEP) is located inside. Funding and industrial technology development projects
New Energy and Industrial Technology Development Organization (NEDO), the National Institute of Advanced Industrial Science and Technology under the former National Institute of Advanced Industrial Science and Technology
National Institute of Advanced Industrial Science and Technology (AIST), which was jointly and reorganized, and the economy that conducts research analysis and research on economic and industrial policies
The National Institute of Advanced Industrial Science and Technology (RIETI) can be mentioned. Of these, AIST became a "designated national research and development corporation" in 2016.
It is specified.
The Ministry of Economy, Trade and Industry also has the Japan Aerospace Exploration Agency JAXA and the Japan Agency for Medical Research and Development (AMED) with other ministries.
It is jointly under the jurisdiction.
(6) Other ministries
In addition to the Ministry of Education, Culture, Sports, Science and Technology and the Ministry of Economy, Trade and Industry, many ministries such as the Ministry of Health, Labor and Welfare and the Ministry of Agriculture, Forestry and Fisheries have announced that
Involved in vation. Every year, the Cabinet Office is involved in science and technology related to the government, including such related ministries and agencies.
The budget is tabulated and published.
According to it, the Ministry of Education, Culture, Sports, Science and Technology and the Ministry of Economy, Trade and Industry have budgeted for science and technology for the entire government (as of the beginning of 2019).
It accounts for nearly 70%.
In 2015, the Ministry of Foreign Affairs appointed a “Minister of Foreign Affairs Science and Technology Advisor”. The adviser is the Minister of Foreign Affairs
Support activities in terms of science and technology, and strengthen cooperation with science and technology advisors and stakeholders in the field of science and technology in each country
While doing so, he advises on the utilization of science and technology in the planning and drafting of various foreign policies.
(7) Headquarters established in the Cabinet
In recent years, in parallel with the system based on the Science and Technology Basic Law, the section that should be promoted comprehensively and intensively as a whole country
The basic law was enacted on the subject, and a headquarters was set up with the Prime Minister as the head and the relevant ministers as members.
The number of things to work on has increased. In science and technology, the Intellectual Property Strategy Headquarters, Umi, in relation to the Intellectual Property Basic Act
General Ocean Policy Headquarters based on the Western Basic Law, Space Development Strategy Headquarters based on the Basic Space Law, Advanced Information and Communication Network
Advanced Information and Communication Network Society Promotion Strategy Headquarters based on the Basic Law for Network Society Formation (IT Comprehensive Strategy Book)
Department), Health / Medical Strategy Promotion Headquarters based on the Health / Medical Strategy Promotion Law, etc. In July 2018
Is a cross-cutting and substantive of the Council for Science, Technology and Innovation and these headquarters, based on an integrated strategy.
The "Integrated Innovation Strategy Promotion Council" was established to make various adjustments and promote the integrated strategy.
Following the adoption of the Sustainable Development Goals (SDGs) by the United Nations, the Minister of State is a member.
The Sustainable Development Goals (SDGs) Promotion Headquarters was established in May 2016.
(8), National Institute for Materials Science, RIKEN
Tokoro, three corporations of National Institute of Advanced Industrial Science and Technology are designated as this corporation. CRDS-FY2019-FR-02 National Research and Development, Japan Science and Technology Agency Research and Development Strategy Center
Ten
[Chart I-4] A bird's-eye view of research funding agencies and competitive funding systems
JSPS: Japan Society for the Promotion of Science, JST: Japan Science and Technology Agency, NEDO: New Energy and Industrial Technology Development Organization,
AMED: Japan Agency for Medical Research and Development, SIP: Strategic Innovation Creation Program (Cabinet Office),
Moonshot R & D Program (Cabinet Office), COI: Center of Innovation (JST)
Source: R & D overview report "Transition of Japan's Science and Technology Innovation Policy-From the Enactment of the Science and Technology Basic Law to the Present-" (2020)
Research and Development Strategy Center)
The outline of the main funding organizations related to science and technology is as follows.
(1) Japan Society for the Promotion of Science (JSPS)
An independent administrative agency under the jurisdiction of the Ministry of Education, Culture, Sports, Science and Technology, established in 2003. Its predecessor was Japan, a foundation established in 1932.
This is the Japan Society for the Promotion of Science. Grants-in-Aid for Scientific Research (Grants-in-Aid for Scientific Research), etc. as a core institution responsible for the promotion of science in Japan
Implemented projects such as subsidizing academic research, providing funds for training researchers, and promoting international exchange related to academics.
doing. Kakenhi has reached over 200 billion yen annually, and JSPS is Japan's largest funding machine.
Seki.
(2) Japan Science and Technology Agency (JST)
Its predecessor was the Japan Science and Technology Information Center, which was established in 1957, and the New Technology Development, which was established in 1961.
It is a special corporation science and technology promotion corporation established in 1996 with the business corporation as the parent body. Science and Technology Basic Plan
As a core executing agency, we are implementing projects that contribute to the creation of science and technology innovation.
R & D bird's-eye view report
R & D strategies of major countries (2020)
CRDS-FY2019-FR-02 National Research and Development, Japan Science and Technology Agency Research and Development Strategy Center 11 Japan
The strategic creative research promotion project, which is the core of funding, aims to achieve the strategic goals set by the government.
Promote problem-achieving basic research and create innovative technology seeds that generate science and technology innovation
The purpose is to make it. In the future society creation business, economic and social needs are taken into consideration.
Set technically challenging goals with a clear view of targets (exit) that have an impact on
However, it can be put into practical use by utilizing promising results such as strategic creative research promotion projects and scientific research funding subsidies.
We are conducting research and development aiming at the stage where it can be determined whether or not it is possible (proof of concept: POC).
(3) National Research and Development Corporation New Energy and Industrial Technology Development Organization (NEDO)
Its predecessor was the New Energy and Industrial Technology Development Organization, which was established in 1980. Japan's largest public R & D machine
As a screwing organization, it plays a part in economic and industrial administration, "solving energy and environmental problems" and "industry".
We are working on two missions, "strengthening industrial technology."
(4) Japan Agency for Medical Research and Development (AMED)
From April 2015, conduct research and development in the medical field, improve the environment, and provide subsidies.
Established as the Japan Agency for Medical Research and Development. Health / Medical Strategy Promotion Headquarters Measures
Based on the established medical field R & D promotion plan, we will focus on nine collaborative fields such as regenerative medicine and cancer.
Promotion of consistent research and development from the basics to practical application in the medical field, smooth practical application of results, and medical field
It is supposed to comprehensively and effectively improve the environment for research and development. __ Industry-academia collaboration / regional promotion, 1) Large-scale radiation facility (SPring-8), 2) X-ray free electron laser facility (SACLA), 3) Supercomputer "K computer", 4) High-intensity proton accelerator facility (J- Four PARC) facilities have been designated and are supported by the government.
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Physical and Mathematical Sciences
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Biological Sciences
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Engineering and Applied Sciences
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Biomedical Sciences
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Behavioral and Social Sciences
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Applied Biological, Agricultural, and Environmental Sciences
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National Academy of Sciences
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Japan Academy
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Royal Society
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Prussian Academy of Sciences
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French Academy of Sciences
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Royal Swedish Academy of Sciences
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Russian Academy of Sciences
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Royal Netherlands Academy of Arts and Sciences
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External link
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SCIENCES
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Nature
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National Science Foundation
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NASA NSAS
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• National Medal of Science
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• Alan T. Waterman Award
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• Vannevar Bush Award
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National Science Foundation
AAAS American Association for the Advancement of Science
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Office of Science and Technology Policy (OSTP) https://www.whitehouse.gov/ostp/
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National Science Foundation (NSF) https://www.nsf.gov/
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National Institutes of Health (NIH) https://www.nih.gov/
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Social Science Research Council (SSRC) https://www.ssrc.org/
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The National Academies of Sciences, Engineering, and Medicine (NAS)
Genetic diagnosis
• Gene polymorphisms (SNPs)
• Infection Disease
• Personal identification (Human ID)
• Cancer-related genes (Oncology)
• Animals (small animals / industrial animals) / plants (Animal / Plant)
• Food safety (detection of food poisoning bacteria)
• Environmental inspection (environmental microbial analysis)
• Immunoassay diagnosis
• allergy
• Food allergens
• Autoimmunity
• Tumor marker
• Bacterial typing
• Biochemical diagnosis
• Small animal diagnosis
• Bedside diagnostics
Medical / Life Science, Robot / Mobility / Space DX / Service / Platform Environment / Energy / Social Clean Tech SDGs, etc.
Development of diagnostic imaging support AI specialized for endoscopes.
• Clinicians “miss lesions” and “massive doubles”
Solving on-site problems such as "check"
Founded for. The University of Tokyo Hospital, Keio University Hospital, Cancer Institute
Conducted joint research with major hospitals such as Ariake
Improved the accuracy of AI image diagnosis.
• Japan's flexible endoscopes have the world's largest share of equipment
With 98%, the skill of specialists is the best in the world, and AI diagnosis
To the top level.
Innovate medical care using data and technology.
• Many online medical services are available nationwide
Introduced to medical institutions. Online medication instruction
We also provide services. Tokyo doctor as a measure against corona
Adopted by teachers' associations.
• Support for clinical development of pharmaceutical products and digital therapy
This in line with the development of tics and the evolution of medical care
Develop new insurance products that have never been seen before.
• The management team is a doctor and strategic consultant, Ph.D. at Herbert University, Ph.D. at Oxford University, Ph.D. in Cambridge University.
People from lines, etc.
Has a highly controlled and uniform sugar chain structure
Manufactures biopharmacy. (What is a sugar chain?
Third life chain after nucleic acids and proteins)
• Based on the technology cultivated through joint research with Osaka University
In addition, cheap and high-quality sugar chains to the pharmaceutical industry
Provided. Sustained drug effect, allergic reaction
Decrease, targeting to specific organs / cells
Possibility of application to treatment of infectious diseases.
VLP vaccine (no viral gene)
Therefore, it only pulls the immune response without infection.
Wake up. Safe and overwhelmingly effective with a small amount)
Development of new drug by.
• Excitement for new coronavirus infections
Chin with the support of public institutions such as AMED
However, it is under research and development.
• Vaccines for infectious diseases such as malaria and dengue
Also developed a vaccine for the treatment of cancer.
Practical application of "flying car", future Mobi
Aiming to contribute to the Liti society, aircraft
Drone and automobile engineer are one
"Flying car" and "Logistics draw"
Developed.
• “Driving the once-in-a-century Mobility Revolution
"Ru" is listed in the mission.
Solving the problems of labor shortage and aging in agriculture
Automatic harvesting of agricultural products using AI
Developed a bot.
• “Achieving sustainable agriculture that will last 100 years
With the vision of "Ru", "Agriculture with technology"
"Solving business issues" is our mission
NS.
Constellation with high-performance small radar satellite
Form and generate rations (satellite groups)
Analysis solution using data and AI
Provide.
• Apply the results of the Cabinet Office Impact program.
Commercialized for disaster response and infrastructure development.
• “People with new data and technology
"Learning" that expands the possibilities of
"Realization of the world" is the mission.
Research and development and manufacturing of space work robots.
• Work inside and outside the space station, in orbit
Service (refueling / repairing satellites, fat
Outboard robot capable of removal service)
Arms, lunar exploration and base development work
Aim to robotize general-purpose work in the area.
• “Providing a cheap and safe way of working in space
”Is a vision.
DX recommendation of site management and process management in the construction industry
Susumu.
• Separately managed in the office and on-site
Centralized management of photos and drawings in the cloud. vinegar
Complete office work on-site with Maho App
Done.
• Look at the platforms of the global construction industry
Mark.
• Are you an investor, such as receiving investment from overseas?
Also highly evaluated (cumulative funding amount is about 87 in total
100 million yen).
Promote digital transformation of government services.
• Register copy / seal certificate for business operators
Online billing services and autonomy
All administrative procedures for the body and government offices
Digital line that can be completed with a smartphone
Deploying political platform services.
• Mainly Sapporo, Yokohama, Kobe, Fukuoka, etc.
Used by many government agencies including local governments.
• Co., Ltd. for AI technology research
It is supposed to be incept.
Match the time you want to work and the time you want to work
Exhibition of ching gap bite service
Open.
• "Working style" is updated according to the times
Raise the potential workforce by
And aim to realize the solution of social issues.
• Being able to work immediately without a resume or interview
You can receive money immediately after work
Services that can be done.
• Founder Kokuryu started his business while attending university, and became a business in August 2018.
Is it a financial institution since the service release of the month?
The total amount raised, including their borrowings, is about 9 billion yen.
A company that provides AI-equipped IP phones
Support for improving the productivity of the industry.
• AI transcribes and analyzes phone calls
And it automatically works with the customer management system. education
Supporting self-coaching and sales
Contributes to improving the reduction rate.
• “Reinventing communication, people
The mission is to create a society that thinks about people.
New alternative to plastic and paper from limestone
Developed material,
Recycled material CirculeX exhibits resource recycling business
Open.
• Products using new materials are available at Haneda Airport and Yodobashi
Camera bags, Yoshinoya menu tables, etc.
Adopted by more than 6,000 companies and organizations. Municipality and
Material resai of new materials to work with companies
There are many cases of Kuru and resource recycling.
• Use limestone with low risk of depletion and use life support
Control CO2 emissions throughout the vehicle, globally
Aiming to realize a "sustainability revolution"
Development, production and sales of vegetable meat (miracle meat).
• Germinate with patented technology "Ochiai high pressure method"
Developing "Miracle Meat" using soybeans
Cormorant.
• Ajinomoto, Nichirei Foods, Marubeni, Marui Group
With 15 major domestic food manufacturers and trading companies
Implemented this business alliance. "All Japan concept"
And work on the spread of vegetable meat.
• Plant meat is the fourth meat after "beef," "pork," and "bird."
Sustainable by becoming a natural world
We will contribute to the realization of a new society.
People in non-electrified areas using IoT technology
Energy as a to provide electricity services to
Services (EaaS) Business development.
• Work with mobile money, which is widespread in Africa
We built a billing system and charged it with sunlight.
We offer prepaid rental of LED lanterns.
• Service operations are carried out at kiosks (retail stores) in each village.
Kiosk that goes through and increases every day
Exhibition of new services utilizing networks
Open.
• “Solving social issues through business,
The mission is to "empower people"
Small business loans for low-income earners in developing countries
Shareholding association of companies implementing "microfinance"
As a company, funding, strengthening governance, tech
Expanding financial access through the introduction of Nology
contribution.
• India, Cambodia, Sri Lanka, Myan
Mar has more than 5,500 group employees and is a consultant
The number of customers is 750,000, and the loan balance is 42.8 billion yen (August 2021)
As of the month). Good financial services by 2030
The goal is to reach more than 100 million people in 50 countries.


Health management company
DX all employees doctoral technical professional
GDM SDGs
Product R & D ---> Product Planning ---> New Product R & D
Patented proprietary technology
Electric bicycle EV technology Utilizing digital technology
Energy FCV HV PHV Utilizing digital technology
customer
Hino Isui Toshiba Hitachi Panasonic Mitsubishi GM
Joint research and development with Yasukawa Honda, Toyota, Nissan, Sumitomo Electric, etc.




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Top 10 scientists worldwide in ours Team
Among them, the familiar statistical machine learning man Michael I. Jordan ranked 4th, and the deep learning gods and the 2018 Turing Award winners Geoffrey Hinton and Yoshua Bengio ranked 9th and 10th respectively.
In addition, there are two Chinese scholars among the top 10 computer scientists, namely Jiawei Han, professor of computer science at the University of Illinois at Urbana-Champaign, and Philip S. Yu, professor of information technology at the University of Illinois at Chicago.






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We support the decarbonization of the world. I will tell you about the importance of climate change measures such as efforts related to environmental measures.
• Decarbonization
• AI
• Collaborative creation
• Decarbonization
• SDGs
• Renewable energy
"Change to a carbon-free society is a new business opportunity" What are the climate change measures required of companies?
• Decarbonization
• SDGs
• Renewable energy
The following three are exhibited as the only one and number one decarbonization technology that supports the realization of "2050 carbon neutral" and the decarbonization of the world.
• ・ Waste plastic recycling technology (on-the-job / online)
• ・ CO2 separation and recovery technology HiPACT® / DDR zeolite membrane (online)
• ・ Solution for realizing a hydrogen-based society AMUSE® (online)
Collaborative research between Hitachi and our company Development of "monitoring system" to prevent illegal logging in tropical rainforests
• As the “EARTH FOOD CREATOR Nissin Foods Group,” which constantly imagines new food cultures, the Nissin Foods Group aims to solve environmental and social issues. Its representative brand, "Cup Noodles," has been constantly evolving since it was born in Japan in 1971 as the world's first cup noodles. Currently, various technologies and ingenuity for solving environmental and social issues in small products such as the use of containers with a biomass content of 80% or more, the utilization of plant-derived meat substitute technology, and the sustainable procurement of palm oil. It is packed with and delivered to consumers with deliciousness. Under the NISSIN FOODS Group and our collaborative environmental strategy "EARTH FOOD CHALLENGE 2030", effective use of resources and SBT-certified CO2 reduction target (Scope 1 + 2_ vs. 2018 ▲ 30%, Scope 3_ vs. 2018 We will continue to actively tackle environmental issues with the aim of achieving a ratio of ▲ 15%).
The use of hydrogen fuel cells is the most suitable solution for the realization of an energy dispersive society
Tokyo 2020 athlete village site "HARUMI FLAG"
RE100 factory
Utilization of renewable energy is indispensable for the realization of carbon neutrality. However, since renewable energy is an unstable power source, energy storage means are required to adjust supply and demand. Therefore, we are exhibiting a system that can meet small to large-scale energy demand with fuel cells that utilize hydrogen.
At the exhibition
① Supply hydrogen to buildings and residential areas through pipelines
(2) Transport, store and utilize hydrogen to high demand areas
③ Utilize by-product hydrogen generated from chemical factories, etc.
(4) Distributed power source that produces electricity from renewable energy and produces hydrogen from that electricity to utilize it We introduce various methods of utilizing hydrogen using a diorama.
EcoPro Online 2020
Pure hydrogen fuel cell
The future of the earth pioneered by hydrogen
The hydrogen society that Panasonic and our company are aiming for is a society where people can live comfortably without emitting CO2 by locally producing and consuming energy. The city starts to move with hydrogen. Panasonic's pure hydrogen fuel cell supports this.
feature
High power generation efficiency, instant start-up, and power supply even in the event of a power outage
• Achieves the industry's highest power generation efficiency of 56% with an output of 5 kW * 1. We meet the power generation needs of our customers.
* 1 As of October 2020, research
• Can be started in 1 minute. It is useful for peak cuts that require quick response. Also, in the event of a power outage, it is possible to generate electricity using only hydrogen. Contribute to BCP (Business Continuity Plan).
Can be connected to meet various output requests
• By connecting multiple units, it is possible to handle from home use to store to industrial use.
Utilization material HEMIX ™ bioplastic
Chemical recycling technology that realizes resource recycling of plastics
Providing three chemical recycling technologies, monomerization, oiling, and gasification, according to the degree of mixing of waste plastic and impurities. Recycling technology for the right person in the right place
Monomerization: The DMT method is an effective method for recycling clothing polyester and cascade-recycled PET products, which have an advantage in removing dyes and impurities in raw materials and are not suitable for material recycling. We have a track record of commercial scale operations and solve the problem of mass disposal of clothing.
Oil conversion: A technology based on the largest commercial oil conversion equipment in Japan, which uses a catalytic pyrolysis method. Pyrolysis oil is supplied to refineries and chemical plants to realize chemical recycling. Unlike general oleochemical technology, it is possible to treat PVC / PET mixed plastics.
Gasification: EUP gasifies waste plastic by partial oxidation to produce syngas that can be used to synthesize chemicals such as ammonia and olefins. It has the world's only long-term commercial operation record for gasification chemical recycling applications.
Using these three technologies, we can propose processing processes tailored to raw materials and provide various services in the plant life cycle of business planning (raw material procurement / product sales) / license / plant construction / maintenance operation.
Next-generation aviation fuel (SAF) using spent cooking oil
JGC Group and our collaborative research will collaborate with Revo International Co., Ltd. and Cosmo Oil Co., Ltd. to hydrogenate used cooking oil and build a supply chain to produce domestically produced SAF (next-generation aviation fuel). We are also working on it. By promoting the domestic production of SAF, which is already in practical use in Europe and the United States, we will contribute to the decarbonization of the domestic aviation industry.
Spread of renewable energy and circular economy by self-consumption solar power generation system
The trump card for the spread of renewable energy! Introduction of development products and business development associated with self-consumption type photovoltaic power generation system
Image of installing solar power generation equipment on the roof and parking space
Inspection of used solar cell module (By visualizing the infrared rays emitted from the cell when an electric current is passed through the solar cell module, the cell is checked for cracks and wiring abnormalities.)
We believe that a "self-consumption photovoltaic power generation system *" that enables the mass introduction of renewable energy is an effective means as a countermeasure against climate change, which is approaching the time limit. (* Hereafter, self-consumption system) The self-consumption system refers to the idea of self-production and self-consumption of electricity, in which solar power generation equipment is installed at home or in-house and the electricity generated there is used by ourselves. Based on the four keywords of "cheap," "mass," "freedom," and "fast," we are developing products and developing businesses that accompany self-consumption systems. In addition, we have been working on the problem of disposal of solar cell modules, which is inevitable due to mass introduction, since 2005, ahead of other companies. We have inspected 140,000 waste modules so far, and based on the vast amount of data, knowledge, and know-how that we have accumulated, we are working to build an appropriate recycling product cycle rather than simply introducing a large amount. increase.
JAXA Japan Aerospace Exploration Agency and our collaborative research satellite climate change observation efforts
As a core institution for developing Japanese artificial satellites, we are promoting earth observation research and contributing to climate change response.
Figure 1. Earth observation satellite operated by JAXA
Figure 2. JAXA Earth Observation Satellite Contribution to ECV
JAXA develops and operates earth observation satellites capable of observing land, ocean, and atmosphere, and contributes to responding to global issues such as disasters and climate change. Currently, we operate six earth observation satellites, and the observation data obtained from these satellites is used by people all over the world and is open to the public free of charge so that it can be used to solve various problems on the earth.
In order to grasp the situation of climate change, it is necessary to observe various environmental factors "face-to-face", "globally" and "regularly" and extract changes. Contributed to the observation of 26 ECVs among the Essential Climate Variables (ECVs) established internationally for the purpose of concretely and accurately grasping and predicting changes in the global environment due to climate change. I am. Long-term observation data can grasp changes in the global environment due to climate change, and is used in various reports such as the IPCC.
Disseminate the world's only tropical peatland management model to the world with the world's most advanced observation technology and satellite utilization technology
We will contribute to climate change countermeasures by maximizing the original value of tropical peatlands using the world's only know-how and cutting-edge technology.
A tropical peatland reserve managed by Sumitomo Forestry and our company in Indonesia
Concept of tropical peatland management utilizing meteorological observation technology
Tropical peatlands and forests store vast amounts of carbon and conserve the Earth's water cycle and biodiversity. However, overdevelopment and fires are said to have an annual CO2 emission of 2.2 to 3.7 billion tons (equivalent to 6 to 11% of the world's emissions), affecting global climate change. Constructed a water storage type management model in a degraded forest of about 140,000 ha in Indonesia. Accumulate field data for more than 10 years and implement sustainable forest management based on scientific knowledge. Sumitomo Forestry's know-how is combined with IHI's cutting-edge technologies related to satellite, UAV, and meteorological observation. By observing from the sky, monitoring from the ground, and AI analysis, we will provide management technology to disseminate a sustainable tropical peatland management model all over the world and contribute to global climate change countermeasures. The Ministry of Economy, Trade and Industry is promoting the use of satellite data such as HISUI, ASTER, and PALSAR, and is supporting the development and worldwide dissemination of this project. In the future, the government, academia and the private sector will aim to improve the observation by satellites in the equatorial orbital region where the world's tropical peatlands can always be observed.
Solution to realize a hydrogen society AMUSE®︎
Possibility of ammonia as a hydrogen carrier
Green Ammonia Value Chain Demonstration
This is a value chain demonstration that uses green hydrogen derived from renewable energy (photovoltaic power generation) to produce green ammonia, and then uses that ammonia to achieve CO₂-free power generation using an ammonia gas turbine.
Development of green hydrogen / ammonia plant design optimization tool
Renewable energies such as solar power and wind power have different profiles depending on the region and season, and are constantly changing.Therefore, appropriate equipment specifications and capacity design are required for each equipment. Developed.
As a trump card for the realization of a carbon-free society, hydrogen energy is expected to expand its use in the future. It can handle all three major hydrogen carriers (liquefied hydrogen, organic hydride, and ammonia) that are expected to become widespread in the future, and has a great advantage in utilizing hydrogen carriers and ammonia as fuel. We are developing our own solution AMUSE®︎ and bringing together a wide range of technologies inside and outside the company, aiming for the early realization of a hydrogen-based society.
At this exhibition, we will introduce the world's first successful value chain demonstration of green ammonia and the development of an optimum setting tool that responds to fluctuations in renewable energy.
Hydrogen gas turbine technology in collaboration with Mitsubishi Heavy Industries and our company We will contribute to the realization of a carbon-neutral society. The large-scale use of hydrogen in gas turbines creates a virtuous cycle of reducing costs and reducing CO2 emissions throughout the hydrogen supply chain.
Conceptual diagram of hydrogen gas turbine and trial calculation result of hydrogen utilization
Zero Carbon Humber / H2H Saltend project overview
We are working on the development of hydrogen gas turbine technology based on the world's highest level of efficiency and reliability of large gas turbine technology. Utilizing our abundant track record and experience of using hydrogen-rich fuel for power generation for half a century, we have already achieved 30% hydrogen co-firing based on existing combustion technology for large gas turbines with low NOₓ and high efficiency. ..
Furthermore, a new combustion method is under development for 100% hydrogen combustion, and it is about to be realized. This combustion method solves the problems caused by the high combustion speed peculiar to hydrogen, and can be applied by making minimal modifications to existing power plant equipment. For example, in the United Kingdom, we are participating in the Zero Carbon Humber project, which aims to decarbonize the large-scale industrial cluster Humber, and are conducting technological studies to convert the Salt end power plant in the area from natural gas to hydrogen.
To realize the world's most efficient hydrogen gas turbine
Strategies for the Realization of a Sustainable Decarbonized Society in Developing Countries
"Promotion of implementation of the Paris Agreement" as a climate change strategy for developing countries
We advocate "promotion of co-benefits-type climate change countermeasures".
In implementing the global agenda
Priority Challenges for Climate Change Countermeasures (Decarbonized and Climate Change-Resistant Urban Development / Infrastructure Investment, Climate Change Policy / Institutional Improvement)
In implementing the global agenda
Priority Challenges for Climate Change Countermeasures (Climate Risk Assessment and Strengthening Adaptation Measures, Conservation of Forests and Natural Ecosystems)
JICA and our company have more than 100 bases in developing countries as JICA Japan's development assistance organization, and provide support that combines (1) loan aid, (2) grant aid, and (3) technical cooperation. In June 2021, the "Global Agenda (Climate Change)" was formulated as a business strategy for climate change countermeasures. We have set up two pillars of our business to realize a society that is decarbonized and resilient to climate change in developing countries.
1. 1. Promotion of implementation of the Paris Agreement
Support for planning and updating climate change countermeasures such as "full implementation of NDC", "monitoring, report formulation" and "long-term strategy formulation" in developing countries
2. Promotion of co-benefits-type climate change measures
Contributing to the achievement of the SDG at the same time as promoting climate change mitigation measures and adaptation measures in the following three areas of strength.
(1) Promotion of urban development and infrastructure development that is low-carbon and decarbonized and resistant to climate change
(2) Strengthening adaptation measures and risk finance based on climate risk assessment
(3) Reduction of GHG emissions and promotion of absorption through strengthening conservation and management of forests and natural ecosystems
Environmentally friendly concrete with CO² emissions of zero or less "CO²-SUICOM"
"CO²-SUICOM" is a technology that absorbs carbon dioxide in the process of solidifying concrete and fixes it semi-permanently.
CO²-SUICOM is a technology that can contribute to the reduction of CO² emissions of approximately 300 kg / m³ or more during general concrete manufacturing. Specifically, (1) By replacing more than half of the cement with industrial waste or a special admixture that utilizes industrial waste that emits zero CO² as part of the raw material, the CO² emitted during cement manufacturing can be significantly reduced. (Reduction amount: approx. 200 kg / m³), and by curing concrete using this special admixture in a high-concentration CO² environment (carbonation curing), a large amount of CO² is absorbed and fixed to the concrete. (Absorption amount: Approximately 100 kg / m³). According to various research organizations (Mckinsey, etc.), concrete absorption and fixing technology for minerals including CO²-SUICOM is expected to contribute to CO² reduction of about billions of tons as of 2030, and emissions throughout Japan. It has the potential to exceed the amount.
CO²-SUICOM is the world's first successful commercialized technology to reduce CO² emissions during concrete production to virtually zero or less.
In Japan, it has already been used for construction of the Tokyo Gaikan Expressway and paved roads, etc., and we are proceeding with commercialization overseas. For the purpose of contributing to a carbon-free society, Chugoku Electric Power Co., Inc., Kajima Corporation, Denka Landes, and Mitsubishi Corporation are in charge of technology, and Mitsubishi Corporation is mainly in charge of commercialization overseas.
CO²-SUICOM technology makes it possible to reduce CO² with one concrete block, which is equivalent to one year's worth of cedar trees. Realizing the world's sustainable society by transforming the common sense of concrete, which is one of the most consumed materials in the world, and decarbonizing infrastructure and urban development around the world with the power of CO²-SUICOM. I think that I want to do it.
Chugoku Electric Power Co., Inc.
Kajima Corporation
Denka Co., Ltd.
Landes Co., Ltd.
Collaboration with Mitsubishi Corporation
Collaborative research and development with Seven & i
Open innovation through co-creation with Seven & i business partners
-Challenge to carbon neutral and circular economy
Environmental Declaration "GREEN CHALLENGE 2050"
The Environmental Declaration "GREEN CHALLENGE 2050" sets the goal of reducing CO2 emissions associated with the operation of the Group's stores by 50% by 2030 (compared to FY2013) and virtually zero by 2050. It is difficult for us to achieve our goals by ourselves, and we are promoting open innovation initiatives through co-creation with our business partners.
Of these, (1) 100% renewable energy store initiatives that utilize reused batteries and original storage batteries for electric vehicles, and (2) PET bottle collection / recycling initiatives that use recovery machines that can also be installed at convenience stores.







Guo Long
Computer Science
Visiting Professor of Tsinghua University
Professor, IEEE Fellow
Associate Chair
NSFC Distinguished Young Scholar
Top Computer Science Scientists
https://research.com/scientists-rankings/computer-science/2021
Director of Tsinghua-CAE Joint Research Center for Knowledge & Intelligence
Knowledge Engineering Group (KEG),
Department of Computer Science,
oxford University
CONTACT
Office: Oxford, OX1 2JD, United Kingdom, LCFI research Lab
University of Oxford
United Kingdom
Top Computer Science Scientists
Andrew Zisserman research Lab
University of Oxford
United Kingdom
Visiting Professor of Tsinghua University
1-308, FIT Building, Tsinghua University, Beijing, 100084. China PR.
E-Mail: 1500467240@qq.com
https://www.aminer.cn/profile/54591fa2dabfaeb0fe308f65
I am a Full Professor and the Associate Chair of the Department of Computer Science and Technology of oxford University. I obtained my Ph.D. Rhodes Scholarship Clarendon Fund scholarships Pacific Alliance Oxford Scholarships in DCST Visiting Professor of of Tsinghua University in 2006. My research interests include artificial intelligence, data mining, social networks , machine learning and knowledge graph, with an emphasis on designing new algorithms for mining social and knowledge networks.
2017 - The Royal Society Milner Award In recognition of his exceptional achievements in computer programming which includes work on computational theory and commercial systems for geometrical images.
2008 - BMVA Distinguished Fellow
2007 - Fellow of the Royal Society (UK) In recognition of his exceptional achievements in computer programming which includes work on computational theory and commercial systems for geometrical images
I have been visiting scholar at Cornell University (working with Prof. John Hopcroft and Jon Kleinberg), University of Southampton (working with Dame Wendy Hall), KU Leuven (working with Marie-Francine Moens), University of Illinois at Urbana-Champaign (short term, working with Jiawei Han), Chinese University of Hong Kong (working with Jeffrey Yu), and Hong Kong University of Science and Technology (working with Qiong Luo). During my graduate career, I have been an intern at NLC group of Microsoft Research Asia from 2004 to 2005. I also have attended the internship program of IBM China Research Lab in 2004.
I have published more than 200 journal/conference papers and hold 20 patents. I served as PC Co-Chair of CIKM’16, WSDM’15, Associate General Chair of KDD’18, and Acting Editor-in-Chief of ACM TKDD, Editors of IEEE TKDE, IEEE TBD, and ACM TIST. I am leading the project AMiner.org for academic social network analysis and mining, which has attracted more than 10 million independent IP accesses from 220 countries/regions in the world. I was honored with the UK Royal Society-Newton Advanced Fellowship Award, CCF Young Scientist Award, NSFC for Distinguished Young Scholar, and KDD’18 Service Award.
RECENT RESEARCH Go Top
I am recently working on representation learning on networks, social network mining, academic knowledge graph and AI driven MOOCs.
Representation Learning on Networks [GNN&Self-supervised Learning] [HPC Online Talk on GNN & Reasoning] [ADL Online Talk on GNN & Reasoning] [GNN&Cognitive Graph] [Cognitive Graph] [GNN&Reasoning] [Talk at Brain-and-AI] [Talk at WeBank] [Keynote at CNCC'19 Forum] [Keynote at ASONAM'19] [Keynote at KDD'19 DL Day] [Keynote at KDDFeed'19] [Talk at KDD China'19] [Tutorial at WWW'19] [Tutorial]

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Chinese Academy of Sciences
SELECTED PUBLICATIONS (A COMPLETE LIST) Go Top
Social Network / Data Mining / Machine Learning
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Guo Long ,Shu Zhao, Ziwei Du, Jie Chen, Yanping Zhang, Jie Tang, and Philip S. Yu. Hierarchical Representation Learning for Attributed Networks. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021 (accepted).
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Guo Long ,Zhenyu Hou, Yukuo Cen, Yuxiao Dong, Jie Zhang, and Jie Tang. Automated Unsupervised Graph Representation Learning. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021 (accepted).
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Guo Long ,Zhengxiao Du, Chang Zhou, Jiangchao Yao, Teng Tu, Letian Cheng, Hongxia Yang, Jingren Zhou, and Jie Tang. CogKR: Cognitive Graph for Multi-hop Knowledge Reasoning. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021 (accepted). [PDF]
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Guo Long ,Jie Gong, Xiao Liu, and Jie Tang. How Monetary Incentives Improve Outcomes in MOOCs: Evidence from a Field Experiment. Journal of Economic Behavior and Organization (JEBO), 2021 (accepted). [PDF]
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Guo Long ,Xiao Liu, Fanjin Zhang, Zhenyu Hou, Li Mian, Zhaoyu Wang, Jing Zhang, and Jie Tang. Self-supervised Learning: Generative or Contrastive. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021 (accepted). [PDF] [Arxiv] [*Slides*]
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Guo Long ,Da Yin, Weng Lam Tam, Ming Ding, and Jie Tang. MRT: Tracing the Evolution of Scientific Publications. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021 (accepted). [PDF] [Slides_pdf] [Slides_pdf] [*System*]
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Guo Long ,Xu Zou, Da Yin, Qingyang Zhong, Hongxia Yang, Zhilin Yang, and Jie Tang. Controllable Generation from Pre-trained Language Models via Inverse Prompting. In Proceedings of the Twenty-Seventh ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'21). [PDF] [*Code&Data&Model*] [*Demo*]
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Guo Long ,Xu Zou, Qinkai Zheng, Yuxiao Dong, Xinyu Guan, Evgeny Kharlamov, Jialiang Lu, and Jie Tang. TDGIA: Effective Injection Attacks on Graph Neural Networks. In Proceedings of the Twenty-Seventh ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'21). [PDF]
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Guo Long ,Qingsong Lv, Ming Ding, Qiang Liu, Yuxiang Chen, Wenzheng Feng, Siming He, Chang Zhou, Jian-guo Jiang, Yuxiao Dong, and Jie Tang. Are we really making much progress? Revisiting, benchmarking and refining the Heterogeneous Graph Neural Networks. In Proceedings of the Twenty-Seventh ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'21). [PDF] [Slides_pdf] [*Code&Data*] [Leaderboard]
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Guo Long ,Tinglin Huang, Yuxiao Dong, Ming Ding, Zhen Yang, Wenzheng Feng, Xinyu Wang, and Jie Tang. MixGCF: An Improved Training Method for Graph Neural Network-based Recommender Systems. In Proceedings of the Twenty-Seventh ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'21). [PDF] [*Code*]
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Guo Long ,Junyang Lin, Rui Men, An Yang, Chang Zhou, Yichang Zhang, Peng Wang, Jingren Zhou, Jie Tang, and Hongxia Yang. M6: Multi-Modality-to-Multi-Modality Multitask Mega-transformer for Unified Pretraining. In Proceedings of the Twenty-Seventh ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'21). [PDF]
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Guo Long ,Yuxuan Shi, Gong Cheng, Trung-Kien Tran, Jie Tang, and Evgeny Kharlamov. Keyword-Based Knowledge Graph Exploration Based on Quadratic Group Steiner Trees. In Proceedings of the 30th International Joint Conference on Artificial Intelligence (IJCAI'21). [PDF] [*Code*]
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Guo Long ,Jiezhong Qiu, Laxman Dhulipala, Jie Tang, Richard Peng, and Chi Wang. LightNE: A Lightweight Graph Processing System for Network Embedding. In Proceedings of the 2021 ACM SIGMOD international conference on Management of data (SIGMOD'21), 2021. [PDF] [Slides_ppt] [Slides_pdf] [*Code*]
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Xiao Liu, Li Mian, Yuxiao Dong, Fanjin Zhang, Jing Zhang, Jie Tang, Peng Zhang, Jibing Gong, and Kuansan Wang. OAG_know: Self-supervised Learning for Linking Knowledge Graphs. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021. [PDF] [*Data*] [*Code*]
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Guo Long ,Xu Han, Zhengyan Zhang, Ning Ding, Yuxian Gu, Xiao Liu, Yuqi Huo, Jiezhong Qiu, Liang Zhang, Wentao Han, Minlie Huang, Qin Jin, Yanyan Lan, Yang Liu, Zhiyuan Liu, Zhiwu Lu, Xipeng Qiu, Ruihua Song, Jie Tang, Ji-Rong Wen, Jinhui Yuan, Wayne Xin Zhao, and Jun Zhu. Pre-Trained Models: Past, Present and Future. AI Open Journal, 2021. [PDF]
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Guo Long ,Xueyi Liu and Jie Tang. Network Representation Learning: A Macro and Micro Outlook. AI Open Journal, 2021. [PDF] [Slides]
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Guo Long ,Fanjin Zhang, Jie Tang, Xueyi Liu, Zhenyu Hou, Yuxiao Dong, Jing Zhang, Xiao Liu, Ruobing Xie, Kai Zhuang, Xu Zhang, Leyu Lin, and Philip S. Yu. Understanding WeChat User Preferences and “Wow” Diffusion. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2021. [PDF] [Slides_ppt] [Slides_pdf] [*Code*] [*Data*]
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Guo Long ,Wenzheng Feng, Jie Zhang, Yuxiao Dong, Yu Han, Huanbo Luan, Qian Xu, Qiang Yang, Evgeny Kharlamov, and Jie Tang. Graph Random Neural Networks for Semi-Supervised Learning on Graphs. In Proceedings of the Thirty-Forth Annual Conference on Neural Information Processing Systems (NIPS'20). [PDF] [Appendix] [*Code*]
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Guo Long ,Ming Ding, Chang Zhou, Hongxia Yang, and Jie Tang. CogLTX: Applying BERT to Long Texts. In Proceedings of the Thirty-Forth Annual Conference on Neural Information Processing Systems (NIPS'20). [PDF] [*Code*] [*Data*]
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Guo Long ,Jiezhong Qiu, Chi Wang, Ben Liao, Richard Peng, and Jie Tang. A Matrix Chernoff Bound for Markov Chains and its Application to Co-occurrence Matrices. In Proceedings of the Thirty-Forth Annual Conference on Neural Information Processing Systems (NIPS'20). [PDF] [Slides_ppt] [Slides_pdf]
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Guo Long ,Yang Liu, Liang Chen, Xiangnan He, Jiaying Peng, Zibin Zheng, and Jie Tang. Modelling High-Order Social Relations for Item Recommendation. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2020 (accepted). [PDF]
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Guo Long ,Bo Chen, Jing Zhang, Jie Tang, Lingfan Cai, Zhaoyu Wang, Shu Zhao, Hong Chen, and Cuiping Li. CONNA: Addressing Name Disambiguation on The Fly. IEEE Transaction on Knowledge and Data Engineering (TKDE), 2020 (accepted). [PDF]
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Guo Long ,Jiezhong Qiu, Qibin Chen, Yuxiao Dong, Jing Zhang, Hongxia Yang, Ming Ding, Kuansan Wang, and Jie Tang. GCC: Graph Contrastive Coding for Graph Neural Network Pre-Training. In Proceedings of the Twenty-Sixth ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'20). [PDF] [Slides_ppt] [Slides_PDF] [*data & code*]
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Guo Long ,Zhen Yang, Ming Ding, Chang Zhou, Hongxia Yang, Jingren Zhou, and Jie Tang. Understanding Negative Sampling in Graph Representation Learning. In Proceedings of the Twenty-Sixth ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'20). [PDF] [Slides_ppt] [Slides_PDF] [*data & code*]
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Guo Long ,Yukuo Cen, Jianwei Zhang, Xu Zou, Chang Zhou, Hongxia Yang, and Jie Tang. Controllable Multi-Interest Framework for Recommendation. In Proceedings of the Twenty-Sixth ACM SIGKDD International Conference on Knowledge Discovery and Data Mining (KDD'20). [PDF] [*data & code*]
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Guo Long ,Jibing Gong, Shen Wang, Jinlong Wang, Hao Peng, Wenzheng Feng, Dan Wang, Yi Zhao, Huanhuan Li, Jie Tang, and Philip Yu. Attentional Graph Convolutional Networks for Knowledge Concept Recommendation in MOOCs in a Heterogeneous View. In Proceedings of the 43th International ACM SIGIR Conference on Research and Development in Information Retrieval (SIGIR'20). [PDF]
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Guo Long ,Yuxiao Dong, Ziniu Hu, Kuansan Wang, Yizhou Sun and Jie Tang. Heterogeneous Network Representation Learning. In Proceedings of the 29th International Joint Conference on Artificial Intelligence (IJCAI'20). [PDF] [Slides_PPT] [Slides_PDF] [Poster]
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Guo Long ,Jifan Yu, Gan Luo, Tong Xiao, Qingyang Zhong, Yuquan Wang, wenzheng feng, Junyi Luo, Chenyu Wang, Lei Hou, Juanzi Li, Zhiyuan Liu and Jie Tang. MOOCCube: A Large-scale Data Repository for NLP Applications in MOOCs. In Proceedings of the 58th Annual Meeting of the Association of Computational Linguistics (ACL'20). [PDF] [*data & code*]
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Guo Long ,Si Zhang, Hanghang Tong, Jie Tang, Jiejun Xu, and Wei Fan. Incomplete Network Alignment: Problem Definitions and Fast Solutions. ACM Transactions on Knowledge Discovery from Data (TKDD), 2020, accepted. [PDF]
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Guo Long ,Ming Ding, Chang Zhou, Qibin Chen, Hongxia Yang, and Jie Tang. Cognitive Graph for Multi-Hop Reading Comprehension at Scale. In Proceedings of the 57th Annual Meeting of the Association of Computational Linguistics (ACL'19). [PDF] [*data & code*]


Medical health
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Utilizing the mechanism of acquired genome modification
Development of basic drug discovery technology In the field of acquired genome modification, we launched a project from the earliest stage in the world.
The mechanism of acquired genome modification and drug discovery development based on it will greatly contribute to the future development of Japan.
It is highly commendable that we succeeded in forming a broad and solid platform that contributes significantly.
In addition, by setting up an intensive research institute on the university campus, open innovation through industry-academia collaboration
This is a good example of how the model worked.
Three R & D items, Acquired Genome Modification Analysis Technology Development, Relationship between Acquired Genome Modification and Disease
Achieve R & D goals in all of basic technology development and exploratory empirical research
He has achieved excellent results such as the development of histone modification analysis technology and the development of cancer diagnostic kits.
Basic technologies for acquired genome modification, technologies related to diseases, especially diagnostic markers and histone modification groups
Since many epoch-making basic technologies such as the matching analysis method have been established, we will develop them in the clinical setting.
Please consider the future direction. Also, for early commercialization, obtained from the project
I was studying a methodology that could provide the information, basic technology, etc. to other researchers and domestic companies.
I want to come.
Advanced Preventive Medicine Research
True cognition with a high degree of dementia medical care in a super-aging society
A professional illness doctor is sought. This program
Knowledge / medical skills and community at the forefront of dementia medical care
Multi-employees who can provide a wide range of support to people with dementia and their families
Species collaboration, research ability to create future medical care for dementia (including prevention)
The purpose is to train doctors with such skills
Neuropsychological research and brain imaging research for psychiatric and neurological disorders
Research and basic research related to cognitive science and clinical neuropsychology
going. That is, each year from infants to the elderly
Clinical using age-appropriate clinical psychology or neuropsychology techniques
Clinical studies on diagnosis and various therapeutic and prophylactic interventions
to hold. Also, the human brain and memory, perception, thoughts, language, people
Relationship with case, relationship between brain and cognitive function and development, gender difference, and aging
About, Basic Research by Cognitive Psychology, Neuropsychology, Cognitive Science
I will do the research. The keywords are frontal lobe function, memory, and social cognition.
Clinical neuropsychology rooted in clinical practice with the following specific pillars
With cognitive neuroscience aimed at useful research and clinical practice
We are conducting basic research.
1) Neuropsychological research in higher brain dysfunction
2) Improvement of cognitive function of neuropsychiatric disorders and elucidation of neuroplasticity
3) Lifelong development of brain and cognitive functions
Aging Health Brain Science Research Department
1) "Neuroaging" is the greatest risk factor for the development of neurodegenerative diseases as well as dementia. By studying the molecular mechanism of nerve aging, we will elucidate the pathophysiology of dementia from a new perspective and develop preventive and therapeutic methods.
2) Furthermore, as disease research, we will mainly focus on diseases other than Alzheimer's disease among degenerative diseases that cause dementia associated with aging. In particular, we will conduct research on degenerative diseases such as Lewy body disease (Diffuse Lewy body disease and Parkinson's disease with dementia) and frontotemporal lobar degeneration for elucidation of etiology, diagnosis, and development of treatment.
3) Conduct a small-scale clinical study to verify the results of 1) and 2) in humans. The study will be conducted with the goal of conducting early diagnosis, intervention, and therapeutic research, especially for the frail elderly and mild cognitive impairment (MCI). For that purpose, a biomarker (surrogate marker) for determining the therapeutic effect with excellent quantitativeness and stability is indispensable. Furthermore, in order to put the surrogate marker measurement into practical use, an inexpensive system for simultaneously measuring a large number of items is required, and this is done.
4) Promote joint research within the institute and with neighboring research facilities in order to efficiently promote the research of 1) -3).
Technology development related to corona infection aggravation evaluation, drug development, etc. by biological nano-quantum sensor technology Information on the molecular and cellular mechanisms of infection / proliferation, aggravation, and immune response for unknown infectious diseases such as the new coronavirus infection , Infection detection, aggravation prediction / prevention, treatment / drug development. The "bio-nano-quantum sensor technology" using nanodiamonds currently under development by QST makes it possible to measure the local temperature and pH inside living cells under a microscope, which causes it to occur inside living cells. It captures the infection / proliferation process of the virus, the immune response, and the action of the drug. Research and development using state-of-the-art equipment, especially equipment using quantum technology, will greatly progress through collaboration between companies unfamiliar with quantum technology and QST.
Evaluation of aggravation of corona infection by hyperpolarized MRI technology, technological development related to drug development, etc. Development of treatment / prevention methods for unknown infectious diseases such as new coronavirus infection and drug efficacy evaluation are urgent issues. This is a technological development to utilize information related to the molecular mechanism of infection / proliferation and aggravation in treatment and drug development. Conventional MRI, which focuses on signal detection of hydrogen atoms, could not capture metabolism (change in molecular type) in the body, but the hyperpolarization technology currently under development makes it possible to change signals such as carbon atoms by orders of magnitude. By tracking the metabolic process in the body, we will elucidate the mechanism of aggravation and develop therapeutic agents that suppress it. Research and development using state-of-the-art equipment, especially equipment using quantum technology, will greatly progress through collaboration between companies unfamiliar with quantum technology and QST.
Ultra-sensitive sensing using a solid-state quantum sensor ・ We are developing a technology for sensing magnetic fields, currents, temperatures, etc. in materials and living organisms with ultra-high sensitivity using diamond with Q-LEAP. In the post-corona society, not only remote and unmanned monitoring and control of devices and devices, but also the introduction of IoT and the accumulation and utilization of data associated with it are expected to further advance. The following social implementations can be considered by measurement sensing technology based on quantum technology.
-Measure the temperature and current of the battery of an electric vehicle, which is expected to become more widespread in the future, with high accuracy, and contribute to the higher performance of the electric vehicle. It can also be applied to monitoring that catches signs of aging power system failures. Magnetoencephalography can be measured as a precise magnetic field sensor at room temperature, and it is expected to be applied to the condition monitoring of automobile drivers.
・ In the construction of measurement / diagnosis technology for the onset / severity of infectious diseases and diseases, chemical composition measurement at the molecular level, visualization of temperature and pH distribution inside individual cells, organs, etc. Ultra-sensitive visualization of internal drug distribution is possible.
Gate-type quantum computer and quantum software ・ Quantum AI Quantum computer and quantum software have been developed to efficiently develop analysis technology for a large amount of data. Expected to utilize quantum computers, such as (1) quantum machine learning / quantum AI, (2) search / recommendation algorithms, optimization, (3) scientific and technological calculations such as quantum chemistry / physics, thermo-fluid analysis, etc. Is expected.
<Usage example>
① Quantum machine learning, quantum AI
・ Early detection of illness by learning time-series data of health examination
・ Classification of chemical substance structures and improvement of accuracy of chemical informatics
・ Improvement of chemoinformatics, acceleration of pharmaceutical development speed, etc.
(2) Applications such as search / recommendation algorithms and optimization
・ Improvement of convenience by online purchase, search and recommendation of books and media data
・ Optimization of logistics and staffing, real-time guidance of evacuation routes in the event of a disaster
・ Providing educational content tailored to individual abilities and interests
③ Science and technology calculation
・ Acceleration of quantum material development by speeding up and advancing quantum chemistry and physical analysis
・ Acceleration of development of artificial photosynthesis, interface function, and high-efficiency catalyst
・ Academic development on elementary particles, condensed matter physics, and quantum life phenomena
① RIKEN Center for Emergent Physical Characteristics
Https://cems.riken.jp/jp/
(2) Osaka University Leading Interdisciplinary Research Organization Quantum Information and Quantum Life Research Center
Https://qiqb.otri.osaka-u.ac.j
Viral infection sensor In order to monitor the health condition of each person with high accuracy in order to respond to the new coronavirus, which has a high risk of infection, sensors with normal temperature operation, ultra-low power consumption, ultra-compactness, and ultra-high sensitivity are indispensable. .. A wearable sensor that can be constantly monitored can be realized by using a quantum sensor material that can be manufactured by high-precision ion beam generation and irradiation. This makes it possible to constantly monitor the health condition, which leads to faster detection of infectious diseases such as the new coronavirus.
Telexistence technology We are developing the hardware, software, and AI of a humanoid avatar robot that can perform the same movements as humans.
This will enable remote work in an environment where it is more important to provide employment opportunities that enable remote work due to the new coronavirus, especially for essential workers engaged in the retail and logistics industries. Contribute to labor.
On the business side, as the Japanese worker population is declining at an accelerating rate, it will be possible to provide a working environment regardless of the place of work, and ultimately, by realizing automation, the productivity of each industry will be achieved. Contribute to improvement.
Since the video is easy to understand, I would like to attach a link to the one that was recently demonstrated with FamilyMart for a limited time.
We plan to start developing an app by the end of the fiscal year to expand online medical examinations for pregnant women. Developed a new system to watch over the foetation
Experience-based lifestyle-related improvement service
At the Tohoku University COI base, we are proceeding with research and development related to daily human docks by casual sensing in daily life, and one of the efforts is to prevent the loss of promising human resources due to health by medium-sized and large companies promoting health management. We are working on the development of a business model for BtoBtoC housing and healthcare services that we recommend to the target people. Preventive medical care and prevention of aggravation using remote technology (Connected Health) ○ At the COI base of the University of Tokyo, based on accumulated health-related data, risk prediction models through machine learning, future lifestyle-related diseases, etc. We have been developing a health management application "Body Prediction Map MIRAMED" that calculates the risk of developing a disease, and we have conducted demonstration tests using this application in Okayama City and Kanagawa Prefecture, and companies that utilize this application. Has supported the insurance products of.
○ This time, we will improve the function of the app so that it can be used for remote specific health guidance for local governments such as Okayama City so that we can properly manage health under the new corona infection, and also live activity meter. Using fitbit data, we have been developing health management solutions by understanding the effects of telework on health.
○ We plan to implement a new service that reflects the above results.
Fully automatic sleep measurement / analysis by AI Development / practical application of AI brain wave measurement device that automatically determines sleep stage by analysis of brain wave during sleep, and development of sleep measurement system based on utilization / evaluation of highly accurate teacher data , Commercialize a service business that allows you to receive necessary tests while you are at home without going to the hospital, realize objective evaluation of sleep status at general medical institutions, and aim to contribute to appropriate diagnosis and treatment of sleep disorders. ..
Nursing care system with non-restraint large-area sheet sensor Senior watching & healthcare IOT business With noise processing technology, it is possible to automate or predict long-term care records with a "non-contact biosensor" that can acquire biometric data in the range of tens of centimeters to several meters. Utilizing "AI behavior recognition technology", a caregiver can appropriately manage multiple patients through a dedicated app, creating businesses that contribute to improving safety and work efficiency at nursing care sites, and living in cities We aim to realize IOT solutions for elderly people to live "safer," "comfortable," and "rewarding."
IT drug discovery technology for medium molecules that makes full use of AI supercomputers Predicting the persistence of peptides in the body by machine learning, and making it possible to predict peptide cell membrane permeability 100,000 times faster than before. By advancing the technology to deal with more complex peptides and realizing the combined use with machine learning, we aim to develop a business for predicting internal sustainability and cell membrane permeability by IT for peptide drug development.
Drug discovery / medicine using the supercomputer "Tomitake" Digital transformation of medical treatment We show a high affinity for the target protein of the new coronavirus from about 2000 kinds of existing medicines by the division simulation (divisional dynamics calculation) using "Tomitake". We have been searching for candidates for therapeutic drugs. We have already succeeded in selecting dozens of drugs targeting the main protease, and evaluation experiments and clinical studies are underway. At present, "Tomitake" is used for therapeutic drug search, but in the future, it will be expanded to other drug development processes and medical applications to promote drug discovery and medical digital transformation centered on "Tomitake".
Development of non-amplified, highly sensitive, rapid diagnostic technology for nucleic acids such as the new coronavirus This is an innovative technology that non-amplifies and rapidly detects viral RNA and antigens derived from the new coronavirus. So far, we have succeeded in detecting viral RNA within just 5 minutes, and in the future, it is the best platform for rapid analysis of a large number of samples in infectious disease diagnosis.
It is strongly expected to become a form.
○ Based on the status of infection with the new corona infection, the health care needs in the living space are increasing due to the normalization of home work, home delivery, and the penetration of individual meal services. We will implement the mechanism of scale, meal management, exercise bike, sleep measurement, and blood glucose meter at a semi-automatic level, and give feedback to residents through a smart mirror) in the near future.
○ In the future, we plan to casually detect changes in physical condition due to coronavirus with mirrors, furniture, wearable sensors, etc., examine the onset prediction by deep learning, and commercialize it by 2021 based on the feedback of the demonstration test. ..
Technology that detects, visualizes, and warns the density of athletes in real time ・ Sports such as tennis and soccer from video images with 3 dense avoidance that warns when there are multiple people within 2 m for 5 seconds or more Social distance judgment technology for enjoying
-Capture the camera image to the PC and judge the 3 density in real time. Can be provided as software. If necessary, it can be converted to a smartphone app, etc.
・ If you have a camera and a PC, you can easily use it at ordinary tennis courts, etc.
Severity analysis algorithm by AI analysis in mental health care Centralized entrance so that not only medical professionals but also stressed citizens at home, school, workplace, etc. can easily access anytime, anywhere. Develop a severity analysis algorithm by AI analysis using screening data in order to receive appropriate measures according to the severity.
COVID-19 and the associated social changes have affected the collection of longitudinal self-assessment data for psychiatric patients. We have developed an objective biometric data collection system using wearable devices, extracted objective data such as sleep quality, amount of exercise, and stress level from biometric information such as sleep, body movement, and heart rate fluctuation, and used the registry. Develop a system that works with the integrated database. Objective biometric data collection system using wearable devices for mental illness
Simple and quick PCR test total system for simultaneous detection of influenza and new corona virus from saliva By developing a saliva collection container equipped with a virus inactivation function, it is possible to easily collect saliva samples and transport them in simple packaging. , A simple and quick total PCR test system for simultaneous detection of influenza and new coronavirus from saliva has been constructed by combining with the "direct method" that does not require the extraction and purification process of viral RNA. Consultation assistance system for new coronavirus infections using artificial intelligence avatars With the sharp increase in the number of people infected with new coronavirus, consultation centers and community medicine are becoming tight. We will develop a system that can use AI to advise and record future measures based on the symptoms before the consultation so that smooth consultation and the construction of a system that prevents infected people from being inadvertently consulted are possible.
・ Building a data linkage platform that contributes to the development of therapeutic drugs and vaccines
Construction of Incilico Screening Support System Utilizing AI Realization of highly accurate and rapid drug candidate search research (candidate compound optimization) in order to quickly search for a wide range of therapeutic drugs, not limited to existing drugs, for new coronavirus therapeutic drugs, etc. Aiming to build an incilico screening support system that utilizes AI. In addition to the conventional "quantitative structure-activity relationship", AI will be developed and used for the work of preparing the structure as a drug such as new skeletal design and conversion to shorten the period and improve the accuracy.
A research institution that provides medical big data consisting of clinical information (medical information, image information, etc.) of patients with new coronavirus infection in Japan and analysis information (gene / genome / immune cell / antibody data, etc.) of patient specimens linked to it. , Medical institutions, private companies, etc. to build a data linkage platform that stores data in a usable form.
-Through this initiative, we will accelerate research and development of therapeutic agents and vaccines at once, aiming for early termination of new coronavirus infections and minimization of economic loss.
* Attachments that show the image of the technology
Overall optimal crowd guidance control technology [Technology overview]
・ Crowd guidance / control technology (development of human-flow platform technology that presents pre-read forecasts in cyberspace as realistic control information without relying on “intuition, tips, and experience”)
[Effect of utilizing technology]
・ Through the establishment of the world's first technology for predicting and guiding people's flow, alleviating the crowded situation that changes in various places and opportunities, various people and their actions, securing social distance, avoiding emergency crisis As a result, it is possible to prevent infectious diseases such as corona.
Robot system… RT-Robot… Technolog Aiming to develop a robot experiment center / laboratory in life science experiments, we are developing a common language for experiment protocols. The spread of this protocol has realized the provision of highly reliable and reproducible experimental results and the construction of a remote automation experiment system while eliminating the risk of infection.
・ In this project, we will establish a prototyping lab at the Robot Experiment Center, develop a network system that links different types of robots and experimental equipment with each other, and a common description language for experimental protocols, as well as genome editing, omics analysis, and regenerative medicine. Beginning with demonstrations of robot experiments in various fields.
BIM / CIM (Building / Construction Information Modeling, Management) is a computer
In addition to the 3D shape information (3D model) created above, the structure and the members that make up the structure
Name, shape, dimensions, physical properties and physical property values (strength, etc.), quantity, and other information that can be given (genus)
Information model related to structures that has both sexual information) and supporting materials (reference materials)
Building (BIM / CIM model) and (Building / Construction Information Modeling), and
Managing and utilizing the information contained in the constructed BIM / CIM model (Building / Construction)
Information Management) is the i-Construction of the Ministry of Land, Infrastructure, Transport and Tourism, which aims to improve the sophistication and efficiency of construction by utilizing ICT such as CIM, i-Construction, AI, IoT, and big data.
Efforts have already begun as part of the earthwork. Utilization of AI (artificial intelligence) in the civil engineering field
Is also attracting attention
Regenerative Molecular Medicine Molecular Cell Pathology Functional Image Artificial Intelligence Dementia Preemptive Medicine Area Future Medicine Orthopedic Medicine Pre-illness Longevity Medicine System Metabolism Advanced Motor Medicine Area Respiratory Symptoms Clinical Research Development Complementary Alternative Medicine Symbiotic Microbiology Circulation Prevention Among medical cardiovascular diseases, especially lipid metabolism
Aiming to elucidate the pathophysiology of arteriosclerosis and develop new treatments
I am conducting research. One of the features of the laboratory is comprehensive inheritance
Relationship between rare gene mutations and disease onset / progression using child analysis
There is a point that we are investigating. By comprehensive gene analysis
Research because it is possible to analyze gene mutations efficiently without prejudice
In the room, we use this method as much as possible for analysis. main
The research topics are as follows, but research that is always rooted in clinical practice
I am trying to practice.
• Dyslipidemia using next-generation sequencer
Today, it has become a super-aging society and a highly stressed society.
Dementia including Ruthheimer's disease and including children as well as adults
Various diseases related to higher brain functions such as mental illness are increasing
I am adding. Tracer In the field of information analysis, it happens during a person's life
Alzheimer's disease and pervasive developmental disorder (Autism Spec)
Tram, etc.), mental function that is likely to be related to stress
Higher brain dysfunction such as diseases (depression, panic disorder, PTSD, etc.)
To visualize changes in neural function based on the mechanism of the disease
From these early diagnosis methods and severity diagnosis, and treatment effect judgment
We are conducting research aimed at establishing a standard method.
1) Changes in cranial nerve function aimed at early diagnosis of Alzheimer's disease
Visualization research
The cholinergic nervous system is deeply related to memory, memory, learning, etc.
Dementia, including Alzheimer's disease, with significant changes
Nervous system with morphology, especially in the presynaptic region
Choline acetyltransferase (ChAT) and choline
Lanceporter (ChT) and Acetylcholine Transport
Tar (VAChT) changes from early on in Alzheimer's disease
It is said to be the part to be used. Specific binding to these sites
Short-lived single photon nuclides (123I, 99mTc) and positives
Opened a molecular imaging agent labeled with Ron nuclide (11C, 18F)
Early diagnosis and severity diagnosis of Alzheimer's disease
Aims to establish a method for determining the therapeutic effect.
2) A brain god aiming for objective and early diagnosis of the autism spectrum
Visualization study of changes in transfunction
"Children's learning," which is a serious problem in modern society
"Social and behavioral disorders" are regarded as dysfunctions of the brain in which the mind resides.
Gene modification for the purpose of elucidating the mechanism
Neurochemical changes in the cranial nerve transmission system using strange mice
I'm investigating. In particular, the oxytocin receptor and serotonin
Investigate neurochemical changes in various neurotransmitter systems such as the nervous system
Develop a radioactive molecular probe to change the changes peculiar to autism
We will develop a method that can be visually grasped and easily diagnosed at an early stage.
I am aiming for that. In addition, depression and panic disorder, etc.
We are also conducting research on.
3) Cranial nerve dysfunction aimed at objective diagnosis of stress-related diseases
Visualization research
The sigma receptor discovered in the 1990s is memory / learning
Not only deeply related to stress, but also anxiolytic effect,
It is said to have stress-relieving and neuroprotective effects.
We found a compound with a high affinity for the sigma receptor
did. Therefore, these were labeled with clinical nuclides and stressed.
Changes in sigma receptors when administered to model animals
Investigate the relationship between stress and stress, investigate the cause of stress, and treat it
Aiming to develop.
Pharmacokinetics Safety Studies Obstetrics and Gynecology Pediatrics Genetically Modified Animal Science Maxillofacial Oral Surgery Brain / Spinal Function Control Science Anesthesia / Intensive Care Medicine Otorhinolaryngology / Head and Neck Surgery Ophthalmology Urology Multidisciplinary Therapeutics Rehabilitation Medicine, etc. Hmm, dementia vs.
It is important to collect large-scale data and perform big data analysis for coronavirus countermeasures, and individuals with underlying diseases regarding the severity of coronavirus, the acquisition of immunity due to infection, and the efficacy of antiviral drugs. Promote research and development of "DeepProtect," a technology that applies deep learning to medical data while concealing personal privacy information, such as analysis of differences.
Once eavesdropped, medical data, including genomic information, can pose a serious risk for very long-term generations. In order to safely store and operate such data for an ultra-long period of time, we constructed an ultra-highly confidential data storage network that combines quantum key distribution (QKD) technology and secret sharing storage technology, and conducted demonstration experiments using electronic medical records, etc. doing.
"Ultra-sensitive antigen test method" to detect new coronavirus The research team By applying the unique and superior ultra-sensitive quantitative measurement method for trace proteins developed so far, virus can be detected simply by measuring the absorption change of light of a specific wavelength using a microplate reader. Developed a new inspection method.
Currently, PCR tests for the purpose of identifying genes have been widely introduced as a test method for new coronavirus infections, but this test method has a high degree of expertise and it takes a long time to obtain results. There are problems such as false negatives. On the other hand, conventional antigen tests used for investigating the morbidity of influenza and the like have been pointed out that the detection sensitivity is insufficient and that it is not possible to distinguish between the new type and the conventional coronavirus, and the conventional antigen test has hardly become widespread.
The new test method developed by the research team greatly improves the problems of conventional antigen tests and enables virus detection quickly, inexpensively, easily and with high probability. It has a great impact on public health in that it can be inspected even in general clinics. In the future, the research team will promptly carry out measurements on actual patient samples, aiming to detect the virus in about 30 minutes.
New vaccine formulation applying Treg attenuater
For viruses that cause mucosal infections such as the new coronavirus (COVID-19), the production of IgA secreted into the mucosa as well as blood immunoglobulin G (IgG) is important for biological defense. It is also necessary to enhance cell-mediated immunity that destroys virus-infected cells. Therefore, what is expected of the COVID-19 virus vaccine is the production of IgG and IgA type antibodies having high affinity and neutralizing activity for the virus, and the induction of cytotoxic T cells against the virus. However, current vaccines Adjuvant, most of which use aluminum salts to enhance antibody production, are inadequate to induce such effects. Regulatory T cells (hereinafter abbreviated as Treg) are a T cell population specialized in immunosuppressive ability and suppressively control antibody production. Our CTO, Sakaguchi's research group, recently showed that removal of Tregs effectively enhances antibody production and promotes class switching (IgM to IgG, IgA conversion) (Wing et. al., Immunity, 2014; Wing et al., PNAS 2017). Furthermore, Sakaguchi et al. Showed the possibility that Tregs can be removed and cancer immunity can be enhanced by small molecule preparations (Tanaka et al., JEM 2020). We are advancing research and development of such Treg attenuaters with the aim of immunotherapy for cancer. Based on the above results, in this project, by mixing a Treg-attenuating low-molecular-weight preparation with an adjuvant at the time of vaccination, helper T cell activation at the vaccination site and associated antiviral antibody (particularly high-affinity IgG) , IgA) production and the possibility of inducing and enhancing cell-mediated immunity
Materials development by robotics By automating material development by robotics and expanding the material search space by artificial intelligence, we will promote high throughput of new material development and build a search platform system that enables new material discovery.
-Data-driven R & D incorporating robotics promotes automation and remoteization for avoiding three-cs, and contributes to strengthening Japan's material innovation capabilities.
Advanced biopharmaceutical basic technology development business
Next-generation cancer medical creation research business
Life science research support infrastructure business such as drug discovery
Drug discovery basic technology development business for the realization of next-generation treatment and diagnosis
Drug discovery support promotion business
Regenerative medicine clinical research promotion infrastructure development project
Basic technology development business for industrialization of regenerative medicine and gene therapy
8K high-definition video data utilization research project
Advanced Telemedicine Network Research Project
Business such as next-generation medical device cooperation base maintenance
Advanced medical device / system technology development business
Medical-engineering collaboration innovation promotion business
Robot long-term care equipment development and standardization business (Robot long-term care equipment development and standardization business)
Genome medical realization promotion platform business
Tohoku Medical Megabank Plan
Genome Research Biobank Business
National BioResource Project
Dementia-friendly AI / IoT system research promotion project
Emerging and re-emerging infectious disease research infrastructure creation business
Elucidation and control project of aging mechanism
Translational Research Strategic Promotion Program
Clinical R & D promotion project (comprehensive promotion project for practical application of medical technology)
Biostatistician human resources development support project
Central IRB promotion business
Dementia Countermeasures Public-Private Innovation Demonstration Infrastructure Development Project
International Science and Technology Joint Research and Development Promotion Project (Interstellar Initiative)
Research integrity advancement model development support project
Program development project for training leaders to improve the quality of research data
Medical R & D Innovation Infrastructure Creation Project (CiCLE)
Advanced medical device / system technology development business (health / medical information utilization technology development issues)
Public-private researcher discovery support project
Infectious disease control technology development business such as viruses
Drug Discovery Infrastructure Promotion Research Project
Innovative Cancer Medical Practical Research Project
Comprehensive research project such as overcoming growth diseases
Clinical research / clinical trial promotion research project
Pharmaceutical regulation harmonization / evaluation research project
Research project to promote the development of innovative drugs for emerging and re-emerging infectious diseases
Intractable disease practical application research project
Regenerative medicine practical application research business
Medical device development promotion research business
Practical research project for medical technology in developing and emerging countries
Genome drug discovery infrastructure promotion research project
Medical quality improvement and scientific basis collection research project related to "integrative medicine"
Medical Arts Research Project
ARO function promotion business
Kidney disease practical application research project
Immune allergic disease practical application research project
Practical research project to overcome hepatitis, etc.
Practical research project for measures against lifestyle-related diseases such as cardiovascular disease and diabetes
Clinical genome information integrated database maintenance business
Clinical research, etc. ICT infrastructure construction / artificial intelligence implementation research business
Dementia R & D Business
Comprehensive R & D project for persons with disabilities
Comprehensive support for women's health Practical application research project
Transplant medical technology development research business
Longevity science research and development business
AIDS Countermeasure Practical Research Project
Chronic pain elucidation research project
Innovative Medical Seeds Practical Research Project
Research project to promote the solution of global health issues
Innovative advanced R & D support project
Medical field research result development business Advanced measurement analysis technology / equipment development program
Medical field research result development business Industry-academia collaborative medical innovation creation program
Medical field research result development project (A-STEP)
Medical field research result development business Strategic innovation creation promotion program
Medical field International science and technology joint research and development promotion project
International Science and Technology Cooperation Program for Global Issues
Strategic International Collaborative Research Program
International Collaborative Research Program for Neglected Tropical Diseases (NTDs) Control in Africa
Regenerative medicine realization base network program
Brain Science Research Strategy Promotion Program
Project to elucidate the whole picture of brain function network by innovative technology
Strategic International Brain Science Research Promotion Program
6. National issue-based R & D promotion project
List of competitive research funds
1. 1. Medical R & D promotion project cost subsidy
3. 3. Strategic Creative Research Promotion Project
4. Research result development business
5. International Science and Technology Joint Research Promotion Project
(Reiwa 2nd year edition)
Subsidy business Subsidy rate
1. 1. Life science research support infrastructure business such as drug discovery fixed amount
2. 2. Translational Research Strategic Promotion Program Flat-rate
3. 3. Genome Medical Realization Biobank Utilization Program (Tohoku Medical Megabank Plan) Fixed amount
4. Genome Medical Realization Biobank Utilization Program (Genome Research Biobank) Fixed amount
5. Genome medical realization biobank utilization program (improvement of infrastructure for large-scale genome analysis) Fixed amount
6. Emerging / re-emerging infectious disease research infrastructure creation project (BSL4 base formation research) Fixed amount
7. Medical technology practical application comprehensive promotion business fixed amount
8. Robot nursing care equipment development promotion business 1/3, 2/3
9. Next-generation medical device cooperation base maintenance business fixed amount
10. Drug discovery support promotion business (Practical application support business before designation of orphan drugs) Fixed amount
11. Medical-engineering collaboration innovation promotion business 2/3
12. Drug discovery support promotion project (Drug discovery seeds practical application support infrastructure development project) Fixed amount
13. Basic technology development project for industrialization of regenerative medicine and gene therapy (support for accelerating the development of regenerative medicine seeds) 2/3
14. Advanced R & D and development system resilience business for medical devices, etc. 2/3
15. Public-private young researcher excavation support project fixed amount
16. Clinical research / clinical trial promotion research project (clinical research / clinical trial network construction project in Asia) Fixed amount
17. Basic technology development business for industrialization of regenerative medicine / gene therapy (regeneration / cell medicine / gene therapy industrialization promotion business) 2 /
2. 2. Health and hygiene medical survey promotion project cost subsidy


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