#author("2019-02-16T02:02:55+00:00","default:hiroshi","hiroshi") #side(News) #author("2023-09-03T05:22:53+00:00","default:hiroshi","hiroshi") *JMEMSハイライト論文に選ばれました。&br;Bio-TFT is picked up as JMEMS RightNow.&br;2018-07-26 [#b263688d] #ref(2018-07-26A.jpg,right,around,zoom,250x250) #ref(2018-08-02A.jpg,right,around,zoom,250x250) 神経細胞を培養して電気・化学的刺激を与えたときの電気的反応を計測するTFT(薄膜トランジスタ基板技術を構築中です。その最初の成果としてTFT上での神経細胞の培養結果と、細胞のインピーダンス計測、電気刺激に対する応答計測を報告した論文が、JMEMSのハイライト(J-MEMS RightNow)に取り上げられました。 A TFT (thin film transistor) substrate is developed to electrically stimulate the cultured neuron cells and to see the electrical responses. The paper published in IEEE/ASME J. MEMS is chosen as a highlight paper J-MEMS RightNow. -&color(black){Faruk Azam Shaik, Grant Alexander Cathcart, Satoshi Ihida, Yoshiho Ikeuchi, Agnes Tixier-Mita, Hiroshi Toshiyoshi, "Electrical stimulation, recording and impedance-based real-time position detection of cultured neurons using Thin-Film-Transistor array," IEEE/ASME Journal of Microelectromechanical Systems, vol. 27, no. 3, 2018, pp. 424-433. [[DOI:10.1109/JMEMS.2018.2810285>http://ieeexplore.ieee.org/document/8320540/?reload=true]]};