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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
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Committee Date Time Place Paper Title / Authors Abstract Paper #
NC, MBE
(Joint)
2021-03-03
16:25
Online Online The Relation Between Auditory Frequency Resolutions and Noise Intensity in Stochastic Resonance States
Kota Ohno, Susumu Kuroyanagi (NIT) MBE2020-45
In general, noise is known to have a negative effect on signals. However, in certain systems, a phenomenon called stocha... [more] MBE2020-45
pp.28-31
OPE, OCS, LQE 2020-10-23
16:05
Online Online Molecule-sensing scheme in which pair of distant comb-lines (delta 174 GHz) from all-optical semiconductor gate resonantly crosses acetylene-molecule's counterpart-pair of absorption lines.
Naoki Takahashi, Chaoyi Wang, Kyosuke Nagasaka, Yushi Suzuki, Kodai Ishida, Yoshiyasu Ueno (UEC) OCS2020-20 OPE2020-43 LQE2020-23
Portable dilute-gas-molecule-density measurement systems are bases for monitoring environmental load-gas densities in in... [more] OCS2020-20 OPE2020-43 LQE2020-23
pp.61-66
CCS 2020-03-26
10:00
Tokyo Hosei Univ. Ichigaya Campus
(Cancelled but technical report was issued)
Nonlinear response of a cochlea model based on asynchronous cellular automaton
Shun Onodera, Hiroyuki Torikai (Hosei Univ.) CCS2019-37
In this paper, we consider nonlinear response characteristics of a cochlea model based on an asynchronous cellular autom... [more] CCS2019-37
pp.13-16
NC, NLP 2013-01-24
14:50
Hokkaido Hokkaido University Centennial Memory Hall Asynchronous Cellular Automata Based Hair Cell Models and their Fundamental Characteristics
Hironori Ishimoto, Hiroyuki Torikai (Osaka Univ) NLP2012-117 NC2012-107
In the mammalian inner ear, the basilar membrane vibrates in response to a sound wave and the inner hair cells transform... [more] NLP2012-117 NC2012-107
pp.79-84
NLP 2012-01-24
09:45
Fukushima Aizu-keiko-do Hall An Asynchronous Sequential Logic Inner Hair Cell Model and its Response Characteristics
Hironori Ishimoto, Hiroyuki Torikai (Osaka Univ.) NLP2011-135
In the mammalian inner ear, the basilar membrane vibrates in response to a sound wave and the inner hair cells transform... [more] NLP2011-135
pp.63-68
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