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                                                                                        2020-1124-03
                                                            
                            
                                                            Nanotechnology / Materials
                                                
                            
                                        posted:2020/12/17                                        
                                         
                            
                        Operation of 3-D MEMS micro mirror by single superposed driving signal
                            IWASE, Eiji                                                                                 Professor                                         (Faculty of Science and Engineering School of Fundamental Science and Engineering)                                        
                                        
                                ● By single driving apparatus, MEMS micro mirror is actuated in  three resonant modes● MEMS micro mirror is operated in 3-D by single superposed signal with the three resonant frequencies                                 
                    
                                                            
                                                                                        2020-1124-01
                                                            
                            
                                                            Nanotechnology / Materials
                                                
                            
                                        posted:2020/12/17                                        
                                         
                            
                        New Synthesis Method for Boron Nitride Nanotubes (BNNTs)
                            NODA, Suguru                                                                                 Professor                                         (Faculty of Science and Engineering School of Advanced Science and Engineering)                                        
                                        
                                ●  New synthesis method of BNNTs by boric acid vapor                                
                    
                                                            
                                                                                        2020-1124-02
                                                            
                            
                                                            Nanotechnology / Materials
                                                
                            
                                        posted:2020/12/17                                        
                                         
                            
                        Development of Test Method for Evaluating Pure Mode Interlaminar Fracture Toughness of Dissimilar Materials
                            HOSOI, Atsushi                                                                                 Professor                                         (Faculty of Science and Engineering School of Fundamental Science and Engineering)                                        
                                        
                                ● Application of Double Cantilever Beam (DCB) test● Cancel the effects of mixing modes when joining dissimilar materials and thermal residual stress● Accurate mode I interlaminar fracture toughness evaluation                                
                    イソブチレンの製造方法
                            MATSUKATA, Masahiko                                                                                 Professor                                         (Faculty of Science and Engineering School of Advanced Science and Engineering)                                        
                                        
                                                            
                                                                                        2291
                                                            
                            
                                                            Nanotechnology / Materials
                                                
                            
                                        posted:2020/11/12                                        
                                                                特許第7535728号                                         
                            
                        CNT-PSS透明導電膜:簡易・柔軟・低抵抗・安定
                            NODA, Suguru                                                                                 Professor                                         (Faculty of Science and Engineering School of Advanced Science and Engineering)                                        
                                        
                                ◆ PSS水溶液にCNTを分散させて製膜する だけの簡易な手法の提供  ◆ 低抵抗(115 Ω/sq)、高透過率(90%)、 高い耐久性(>1000 h)、耐熱性(250 C)を実現                                
                    
                                                            
                                                                                        2316
                                                            
                            
                                                            Nanotechnology / Materials
                                                
                            
                                        posted:2020/11/12                                        
                                                                特許第7491547号                                         
                            
                        ダイヤモンド電界効果トランジスタ及びその製造方法
                            KAWARADA, Hiroshi                                                                                 Professor                                         (Faculty of Science and Engineering School of Fundamental Science and Engineering)            (retired)                            
                                        二酸化炭素の固定化方法
                            NAKAGAKI, Takao                                                                                 Professor                                         (Faculty of Science and Engineering School of Creative Science and Engineering)                                        
                                        
                                                            
                                                                                        2387
                                                            
                            
                                                            Social Infrastructure
                                                
                            
                                        posted:2020/11/09                                        
                                                                特許第7478393号                                         
                            
                        自律移動サービスロボットのための先導・追従行動計画システム
                            KAMEZAKI, Mitsuhiro                                                                                 Guest Senior Researcher                                         (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)                                        
                                        
                                本発明は、所定の目的地まで歩行者等の移動対象を先導し、また、荷物運搬や警護等のために移動対象に追従するタスクを行うための自律移動ロボット、並びに、その制御装置及び制御プログラムに関するものであり、混雑した空間内において想定される様々な不測の事態に対応しながら、サービスタスクを...                                
                    
                                                            
                                                                                        2392
                                                            
                            
                                                            Social Infrastructure
                                                
                            
                                        posted:2020/11/09                                        
                                                                特許第7502781号                                         
                            
                        クラッチ機構を用いた動的重力補償ロボットシステム
                            SCHMITZ, Alexander                                                                                 Guest Senior Researcher                                         (Faculty of Science and Engineering Graduate School of Creative Science and Engineering)                                        
                                        
                                                            
                                                                                        2020-1012-07
                                                            
                            
                                                            Life sciences
                                                
                            
                                        posted:2020/10/27                                        
                                         
                            
                        A Method for Chromatic Adaptation Conversion in Skin Disease Diagnosis
                            SOTA, Takayuki                                                                                 Professor                                         (Faculty of Science and Engineering)                                        
                                        
                                ● Renunciation of perfect color reproduction  ● Custom setting of reference chromaticity coordinates● Realization of stable white balance                                
                    
                                                            
                                                                                        2020-1012-06
                                                            
                            
                                                            Life sciences
                                                
                            
                                        posted:2020/10/27                                        
                                         
                            
                        Development of novel therapeutic strategy that targets pancreatic β cells for diabetes mellitus
                            GODA, Nobuhito                                                                                 Professor                                         (Faculty of Science and Engineering)                                        
                                        
                                ● Increase in numbers of functional pancreatic β cells ● Creation of pancreatic β-like cells by transdifferentiation                                
                    
                                                            
                                                                                        2020-1012-05
                                                            
                            
                                                            Life sciences
                                                
                            
                                        posted:2020/10/27                                        
                                         
                            
                        High sensitivity DOI-PET detector
                            KATAOKA, Jun                                                                                 Professor                                         (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Applied Physics)                                        
                                        
                                ● Resolution improvement  for the PET scaner● 3D measurement of  incident gamma rays  ● Novel optical sensor of the magnetic field resistant                                
                    
                                                            
                                                                                        2020-1012-04
                                                            
                            
                                                            Life sciences
                                                
                            
                                        posted:2020/10/27                                        
                                         
                            
                        Success in promoting plant growth for biodiesel
                            TOMINAGA, Motoki                                                                                 Professor                                         (Faculty of Education and Integrated Arts and Sciences School of Education)                                        
                                        
                                ● We Focused on Camelina its oil from seeds used as a raw material for biodiesel.● Succeeded in enhancement of seed production by heterologously expressing the high-speed  Chara-Arabidopsis chimeric myosin XI gene in Camerina                                
                    
                                                            
                                                                                        2020-1012-01
                                                            
                            
                                                            Life sciences
                                                
                            
                                        posted:2020/10/27                                        
                                         
                            
                        Ultrasensitive antigen test for COVID-19
                            ITO, Etsuro                                                                                 Professor                                         (Faculty of Education and Integrated Arts and Sciences School of Education)                                        
                                        
                                ● We propose a de novo antigen test for diagnosing COVID-19 using the combination of sandwich ELISA and thio-NAD cycling. Our test takes advantage of the spike (S1) proteins specific to the SARS-CoV-2 virus.                                 
                    歩行者の移動予測技術およびそれに基づく移動ロボットの経路計画アルゴリズム
                            KAMEZAKI, Mitsuhiro                                                                                 Guest Senior Researcher                                         (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)                                        
                                        
                                本発明は、人の速度ベクトルの測定誤差と将来的な速度ベクトルが現在の値を保持するかを示す保持可能性を考慮することで,軌道計画のロバスト化を目指した経路計画アルゴリズムを提案するものである。人の速度ベクトルの測定誤差と保持可能性を考慮した働きかけのタイミングの決定および人とロボッ...                                
                    ロボットになりきるための遠隔操縦システム
                            OTANI, Takuya                                                                                 Junior Researcher                                         (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)            (retired)                            
                                        
                                本シーズは、人間の高い運動安定能力を生かしたロボット操縦を可能とするため、ロボットやバーチャルキャラクターといった操縦対象の行動時の安定維持に必要な情報として視覚や足裏力覚情報などを操縦者が理解しやすいよう変換して提示し、さらに操縦者と操縦対象の身体の大きさや重さ・運動能力と...                                
                    複数人移動予測に基づく混雑環境下でのロボットの接近・接触移動技術
                            KAMEZAKI, Mitsuhiro                                                                                 Guest Senior Researcher                                         (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering)                                        
                                        
                                混雑環境下で自律移動するロボットの経路生成に適した周囲の人間等を含む移動予測モデルを構築し、ロボットの移動効率と周囲の人間等に与える負担を考慮しながら、最適な移動経路を生成することができるロボット、移動経路生成装置及びそのプログラム、並びに、移動予測装置を提供する。                                
                    
                                                            
                                                                                        2127
                                                            
                            
                                                            Nanotechnology / Materials
                                                
                            
                                        posted:2020/06/17                                        
                                         
                            
                        ポリマー、電極活物質及び二次電池
                            OYAIZU, Kenichi                                                                                 Professor                                         (Faculty of Science and Engineering School of Advanced Science and Engineering)                                        
                                         
                 
                         
                         
                         
                         
                         
                         
                         
                         
                                
