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1117
Life sciences
posted:2014/04/03
Mutational analysis method for JAK2 genes
TSUNEDA, Satoshi Professor (Faculty of Science and Engineering)
This method uses a fluorescent probe as a method of measuring the JAK2 gene mutations seen in chronic myeloproliferative disorders (MPDs). It enables quantification that is highly sensitive, simple, low cost, and high throughput.Applications to pharmaceutical screening methods...
2013-1022-01
Life sciences
posted:2013/10/25
コラーゲンを用いる新規DDS
KOIDE, Takaki Professor (Faculty of Science and Engineering)
・ステルス性と高尿排泄性を持つ今までに無い薬物担体・抗原性が低く安定
2013-1021-02
Life sciences
posted:2013/10/25
諸物性がデザインできる “テーラーメイド輸送体によるDDS”
SOU, Keitaro Senior Researcher (Faculty of Science and Engineering)
・創薬とDrug Delivery Systems(DDS)を融合させるプラットフォーム・ナノ輸送体の物性デザインにより薬物動態を制御(独自の機能性脂質ライブラリーを使用)・新薬開発の加速、付加価値DDS製剤の創出
2013-1017-01
Life sciences
posted:2013/10/25
非侵襲メラノーマ診断支援システム
SOTA, Takayuki Professor (Faculty of Science and Engineering)
・非侵襲的方法によるメラノーマの早期発見・色素分子レベルの情報に基づく客観的かつ定量的な診断支援
2864
Information Communication
posted:2025/03/04
量子計算システム及び量子計算方法
TOGAWA, Nozomu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2869
Social Infrastructure
posted:2024/12/03
熱電発電デバイス用基板及び熱電発電デバイス
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2837
Life sciences
posted:2024/12/03
共培養デバイスおよびその使用
MORIMOTO, Yuya Associate Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2812
Information Communication
posted:2024/11/06
光信号受信器及び光信号受信方法
KONISHI, Tsuyoshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2799
Nanotechnology / Materials
posted:2024/09/03
データ処理方法、データ処理装置、及びデータ処理プログラム
TANII, Takashi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2769
Information Communication
posted:2024/07/29
光学素子および空中映像投影装置
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2790
Nanotechnology / Materials
posted:2024/07/05
六角筒連続体の製造方法
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2023-0127-07
Nanotechnology / Materials
posted:2023/01/27
3Dナノ界面を有する異種材料接合技術
HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2023-0127-06
Nanotechnology / Materials
posted:2023/01/27
切り紙構造を用いたフレキシブル熱電発電デバイス
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2023-0127-01
Nanotechnology / Materials
posted:2023/01/27
海水のイオン導電性を利用した海中無線通信 ~海水管,漁業用いけす内のワイヤレスリアルタイムモニタリングが可能に~
KAWARADA, Hiroshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
collaborative researchers: 佐藤 弘隆 , 正留 康太 , 野本 玲於奈
異種接合材の純モード 層間破壊靱性評価試験法の開発
HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
◆ DCB試験の応用 ◆ 異種材接合に伴う混合モードの影響を除去◆ 熱残留応力の影響をキャンセル◆ 正確なモードⅠ層間破壊靱性の評価
電気機器の動作監視、異常検出方法
OGAWA, Tetsuji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
動作部と制御部を有する電気機器(フライホイール等)の制御状態監視方式であり、状態データ(制御信号等)を用いて、動作部が所定の目的状態(【例】X,100回転での運転 / Y:70回転での運転 )であることを示す特徴データ(尤度等)をパターン認識により得て抽出する状態推定器と、その特徴データを用いて...
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
2020-1124-02
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