Art
J-GLOBAL ID:202002211822799403
Reference number:20A0948642
Bio-sensing and nerve stimulation using flexible electronic devices
フレキシブル電子デバイスによる生体信号計測と神経刺激
Author (1):
Material:
Issue:
MAG-20-016-046/MBE-20-001-031 マグネティックス研究会/医用・生体工学研究会
Page:
37-40
Publication year:
Mar. 19, 2020
JST Material Number:
Z0924B
Document type:
Proceedings
Article type:
原著論文
Country of issue:
Japan (JPN)
Language:
JAPANESE (JA)
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Semi thesaurus term:
Thesaurus term/Semi thesaurus term
Keywords indexed to the article.
All keywords is available on JDreamIII(charged).
On J-GLOBAL, this item will be available after more than half a year after the record posted. In addtion, medical articles require to login to MyJ-GLOBAL.
,...
JST classification (2):
JST classification
Category name(code) classified by JST.
Manufacturing technology of solid-state devices
, Biometry
Reference (9):
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M. Kaltenbrunner, T. Sekitani, J. Reeder, T. Yokota, K. Kuribara, T. Tokuhara, M. Drack, R. Schwödiauer, I. Graz, S. Bauer-Gogonea, S. Bauer, and T. Someya : ′′An ultra-lightweight design for imperceptible plastic electronics′′, Nature, Vol. 499, pp. 458-463 (2013)
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J. Reeder, M. Kaltenbrunner, T. Ware, D. Arreaga-Salas, A. Avendano-Bolivar, T. Yokota, Y. Inoue, M. Sekino, W. Voit, T. Sekitani, and T. Someya : ′′Mechanically adaptive organic transistors for implantable electronics′′, Advanced Materials, Vol. 26, pp. 4967-4973 (2014)
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関野正樹, 関谷毅, 染谷隆夫: フレキシブルな体内埋め込み型デバイスによる生体計測. 有機分子・バイオエレクトロニクス分科会会誌, Vol.26, pp.9-12(2015)
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H. Fuketa, K. Yoshioka, Y. Shinozuka, K. Ishida, T. Yokota, N. Matsuhisa, Y. Inoue, M. Sekino, T. Sekitani, M. Takamiya, T. Someya, and T. Sakurai : ′′1 μm-thickness ultra-flexible and high electrode-density surface electromyogram measurement sheet with 2 V organic transistors for prosthetic hand control′′, IEEE Transactions on Biomedical Circuits and Systems, Vol. 8, pp. 824-833 (2014)
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S. Lee, Y. Inoue, D. Kim, A. Reuveny, K. Kuribara, T. Yokota, J. Reeder, M. Sekino, T. Sekitani, Y. Abe, and T. Someya : ′′A strain-absorbing design for tissue-machine interfaces using a tunable adhesive gel′′, Nature Communications, Vol. 5, pp. 5898 (2014)
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