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2062
Life sciences
posted:2020/04/14
特願2018-158059

生体外で創る血管病モデルと薬剤スクリーニングへの応用

YAGI, Takanobu Researcher (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
患者の血管病の病態に近似し、簡便かつ短期間で作製 可能で、血管組織が正常から病態へと経時間的に変化す るプロセスを解明することが可能な、ex vivoの疾患モ デルの作製方法を確立し、血管病の予防又は治療のため の薬剤のスクリーニングに利用可能な疾患モデルを提供 することを課題とする。
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2018-1123-03
Life sciences
posted:2018/11/28

Reproduction model device for cerebral aneurysm

YAGI, Takanobu Researcher (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
collaborative researchers:SAKAGUCHI, Katsuhisa Associate Professor
●  Establishment of a novel ex vivo technique of reproducing cerebral aneurysm.●  Reproduce diseased state of the arteries from healthy by hemodynamic loading.●  Reproduce degenerative change of arteries due to aberrant hemodynamics.
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1864
Manufacturing Technology
posted:2018/04/18
2018-37542

熱電発電装置

WATANABE, Takanobu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering Department of Electronic and Photonic Systems)
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1910
Manufacturing Technology
posted:2017/06/23
特開2018-144668

羽ばたき型飛行機

WATANABE, Takanobu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering Department of Electronic and Photonic Systems)
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2017-0223-02
Energy
posted:2017/02/23

Development of Scalable Micro Thermoelectric Devices

WATANABE, Takanobu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering Department of Electronic and Photonic Systems)
● Si nanowire is used as the thermoelectric material. ● Miniaturized TE device fabricated by the Si-LSI process capable of mass-production
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2011-0916-01
Nanotechnology / Materials
posted:2014/05/21

Large-scale molecular simulation

WATANABE, Takanobu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering Department of Electronic and Photonic Systems)
By using “dynamic bond-type large-scale molecular dynamic methods” we are able to perform large-scale molecular simulations that even include chemical reactions.
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1231
Manufacturing Technology
posted:2014/04/03

Flapping robot

WATANABE, Takanobu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering Department of Electronic and Photonic Systems)
This invention is a compact unmanned aerial vehicle (or micro aerial vehicle (MAV)) which performs a flapping motion, and can freely change the angle of its flapping and feathering.
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2011-0906-04
Social Infrastructure
posted:2014/05/21

The creation of indexes for fostering green manufacturers and green consumers

WASHIZU, Ayu Professor (Faculty of Social Sciences School of Social Sciences)
We implement a method of analyzing inter-industry relations in the evaluation of influence by corporate environmental activities on the environment from a wide range of perspectives. Furthermore, econometrics methods based on social statistics will be applied in order to evalu...
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2011-0928-01
Information Communication
posted:2014/05/21

Highly efficient development technology for highly reliable software systems

WASHIZAKI, Hironori Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
In order to prevent trouble from occurring in advance, it is vital to improve reliability. Software development goes through multiple stages from basic design to installation, and reliability is gradually lost along the process. To counter this are efforts to improve the relia...
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2012-0903-01
Energy
posted:2014/05/21

Experiment Using High Quality Beams

WASHIO, Masakazu Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
The Washio Laboratory conducts research on PEMFC. It is also working on the development of materials which can be used as an electrolyte membrane for a Polymer Electrolyte Fuel Cell (PEFC) that is capable of having a compact and light weight design.
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2012-0903-02
Energy
posted:2014/05/21

Uncovering the Initial Process of Radiation Chemical Reactions: Pulse Radiolysis Experiment

WASHIO, Masakazu Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
The Washio Laboratory is developing the world’s smallest pulse radiolysis system using a compact photocathode RF electron gun. At present, the laboratory has nearly completed the development of a nanosecond resolution system and picosecond resolution system.  The nanoseco...
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2012-0903-03
Energy
posted:2014/05/21

Maskless Direct Etching Technique Using Focused Ion Beams (FIB)

WASHIO, Masakazu Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
This research attempts to carry out maskless direct etching using focused ion beams (FIB) in order to study the nanoscale microfabrication of cross-linked PTFE. An image of the fabricated microscopic structure FE-SEM is shown in a diagram. 
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2012-0903-04
Energy
posted:2014/05/21

Development of Inverse Compton Scattering Soft X-ray Sources Using Photocathode RF Gun

WASHIO, Masakazu Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
■Development of Inverse Compton Scattering Soft X-ray Sources Using Photocathode RF GunIn this research, compact and high quality soft X-ray sources are being developed using inverse Compton scattering, with the final goal of applying them to soft X-ray microscopes for biologi...
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2014-0122-03
Nanotechnology / Materials
posted:2014/01/31

EB-NILによる極微細構造体作製

WASHIO, Masakazu Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
・省エネ・低コストでの微小部材作製方法・生体適合性に優れた微小部材・極限環境下で使用可能な耐薬品・耐熱・耐放射線性に優れたフッ素系微小部材
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1913
Social Infrastructure
posted:2017/06/20
特開2018-153898

能動的接触力調整エンドエフェクタ

WANG, Wei Assistant Professor (Faculty of Science and Engineering)
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2018-1123-04
Life sciences
posted:2018/11/29

Artificial blood vessel unit for fabrication of artificial organ

UMEZU, Shinjiro Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
collaborative researchers:SAKAGUCHI, Katsuhisa Associate Professor , 秋元 渓 , 大矢 貴史
●  Luminal structure was fabricated by using titanium wire and hydrogel. ●  Artificial vascular structures are created by using vascular endothelial cells adhered titanium wire. ●  Artificial vascular structures were perfused with culture medium.
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2067
Social Infrastructure
posted:2018/06/13
特開2019-202097

心電モニタリングシステム

UMEZU, Shinjiro Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
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173
Life sciences
posted:2014/04/03

Fluid circulation apparatus

UMEZU, Mitsuo Professor (Faculty of Science and Engineering School of Creative Science and Engineering Department of Modern Mechanical Engineering)
This is a circulation circuit without air contact made of several (three to four) pulsatile flow pumps and one compliance tube that simulates aortic elasticity properties.
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452
Life sciences
posted:2014/04/03

Bloodstream simulator and stream convertor

UMEZU, Mitsuo Professor (Faculty of Science and Engineering School of Creative Science and Engineering Department of Modern Mechanical Engineering)
This simulation device is able to accurately reproduce coronary artery flow which have different flow conditions from aortic flow. It is also able to carry out various assessments accurately for artificial organs, medical equipment, and surgical methods, etc. that are appli...
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8
Life sciences
posted:2014/04/03

Artificial Coronary Artery, Coronary Artery Stent Performance Evaluation Simulator

UMEZU, Mitsuo Professor (Faculty of Science and Engineering School of Creative Science and Engineering Department of Modern Mechanical Engineering)
This apparatus is a coronary circulation simulator that simulates bodily functions, and is used for safe and effective evaluations and tests of devices which have coronary artery functions, such as coronary artery stents.
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