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2022-1020-05
Life sciences
posted:2022/10/24
Sins of anticancer drugs
ITO, Etsuro Professor (Faculty of Education and Integrated Arts and Sciences School of Education)
● Whereas anyone can measure nucleic acids, what we really would like to know are the trace amounts of proteins that function in the body. ● Application of an ultrasensitive ELISA enables us to detect proteins responsible for malignant transformation.
2022-1020-03
Life sciences
posted:2022/10/24
Research on improving mental health problems using the iACT self-help application "emol”
OTSUKI, Tomu Professor (Faculty of Human Sciences School of Human Sciences)
● Realize an intervention with iACT self-help application.
2022-1020-01
Life sciences
posted:2022/10/24
Epithelial cell-cell communication to facilitate or attenuate the aberrant cell elimination
MARUYAMA, Takeshi Part-time Lecturer (Affiliated organization Waseda Institute for Advanced Study) (retired)
● Optimal cells eliminate suboptimal cells● The mechanism of epithelial cell-cell communication via the interaction between Ligand and Receptor● AltR-targeting treatment enhances or suppresses the elimination
待機・迂回を含む後退的行動と接近・接触を含む前進的行動を併せ持つ自律移動ロボットの統合的軌道計画
KAMEZAKI, Mitsuhiro Guest Senior Researcher (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)
画像処理方法、画像処理装置、X線回折装置およびプログラム
ASAHI, Toru Professor (Faculty of Science and Engineering)
本シーズは、データ分析で用いられる密度ベースクラスタリングを応用した画像処理技術に関します。本シーズによれば、平面画像を構成する各画素に対応する位置に各画素の画素値に応じた密度で点を配置し、それらの点に密度に基づくクラスタリングを実行することで、所望の画素値を有する画素が密に...
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複合材料(CFRP)を用いた曲面の製造方法、製造システム
MAEKAWA, Takashi Senior Researcher (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering) (retired)
2515
Social Infrastructure
posted:2022/05/02
特許第7461664号
照射線量推定装置および照射線量推定方法
KATAOKA, Jun Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Applied Physics)
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細線を用いた電気パルス解体方法(手作業解体からの解放に向けて)
TOKORO, Chiharu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
少なくとも2個の部材が接合されてなる対象物の表面の一部分に導電性材料を接触させ、大気中で前記導電性材料に高電圧パルスを印加して衝撃波を発生させて、前記対象物の接合部位に衝撃波を作用させることで前記対象物の部材同士を剥離させる、対象物の解体方法。
2022-0203-09
Nanotechnology / Materials
posted:2022/02/03
Ultra-low-loss Tapered Optical Fibers(TOFs) and Ultra-high-Q Microtoroidal Resonators
AOKI, Takao Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
● Succeeded in developing a nanofiber optic with a transmittance of 99.7% or more using our unique technology● Developed a "nano-fiber optic resonator" that combines a nano-fiber and a fiber Bragg grating (FBG). By combining this with a single atom that is laser-cooled and tra...
2022-0203-08
Nanotechnology / Materials
posted:2022/02/03
Quantum computers with Cavity QED with nanofiber optic resonator
AOKI, Takao Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
● Proposing a distributed quantum computer using the original technology "nano-fiber optic resonator QED“● The unique resonator treats photons and atoms of light as qubits. Each unit incorporated in this optical fiber becomes a quantum computer, and can be connected in the sam...
2022-0203-07
Nanotechnology / Materials
posted:2022/02/03
Method for simultaneously observing atomic and electronic structures by a high-resolution display-type photoelectron analyzer with Spherical micro-hole grid
MIZUNO, Jun Guest Senior Researcher (retired)
collaborative researchers:室 隆桂之 (retired), 松下 智裕 (retired), 澤村 ⼀実 (retired)
● In 2013, Prof. Matsushita of NAIST invented the principle of a new type of electron analyzer (retarding field analyzer: RFA) and the special spherical micro-hole grid (3D Micromesh electrodes) using electron orbit simulation. By combining RFA (element electric field typ...
2022-0203-05
Nanotechnology / Materials
posted:2022/02/03
Hybrid Bonding at Low Temperature and Atmospheric Pressure
MIZUNO, Jun Guest Senior Researcher (retired)
collaborative researchers:SHOJI, Shuichi Professor (retired), 重藤 暁津 (retired)
● Hybrid bonding of Cu, PDMS, and quartz at 150 ℃ and atmospheric pressure
2022-0203-04
Nanotechnology / Materials
posted:2022/02/03
Ag aerogel film; Binding interface easily & stably
NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
● A unique aerogel film made of Ag particles.● Contains no additive, easily sinters into bulk, and builds excellent electrical, thermal, and mechanical interfaces with high heat resistance.●Can be manufactured quickly at high yield with small Ag amount (~10 mg/cm2, material co...
2022-0203-03
Nanotechnology / Materials
posted:2022/02/03
Flame synthesis of single-wall carbon nanotubes
NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
●Premixed flame for rapid heating of gas and decompositionof catalyst precursors.●Rapid mixing with carbon source for nucleation of catalystparticles and CNTs at high density.→ Continuous synthesis of 1 nm-diameter single-wall CNTs.
2022-0203-02
Nanotechnology / Materials
posted:2022/02/03
Reforming of hydrocarbon to carbon nanotubes and hydrogen
NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
● Produce CNTs at high yield from hydrocarbon by original fluidized-bed technology. Convert C and H in CnH2m to CNTs and H2.
2022-0203-01
Nanotechnology / Materials
posted:2022/02/03
Application of Microdroplets to Chemical Reactions
TANAKA, Daiki Assistant Professor
collaborative researchers:藤⽥ 博之 , 関⼝ 哲志 , SHOJI, Shuichi Professor
● Design of micro-devices to stabilize droplet generation,surface treatment of channels, and flow conditions● Encapsulation of chemicals for chemical reaction field control
自立膜、積層シート、及び自立膜の製造方法
NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)