著者
百瀬桂子
所属
題材
被検体
データ収集方法
モデル
専門分野
神経科学
評価指標
キーワード
ショット雑音Hodgkin-Huxley 型モデル確率共振現象情報レートシミュレーション1/fb ノイズ
概要

書誌:生体医工学,2011

川 口  港・簑 弘 幸・百瀬 桂子・Dominique M. DURAND.(2011), 確率共振現象による海馬CA1ニューロンモデルでの情報伝送の強化:雑音の付加位置および周波数スペクトルに関する検討, 生体医工学, 49(1), 176-184.

Abstract

Stochastic resonance (SR) is a phenomenon whereby detection of sub-threshold signal is improved by additive background noise in nonlinear systems. It has been unclear how this phenomenon is affected by the characteristics of background noise. In this paper, we investigate the effects of background noise characteristics on information transmission in a realistic hippocampal CA1 neuron model, i. e., the effect of input locations of the background noise and the influence of power spectra of the background noise. Using the computer simulation, the random sub-threshold input signal generated by a filtered homogeneous Poisson process was applied to a distal portion of the apical dendrite, while the background noise having a 1 f b (b = 0, 1, 2) power spectrum generated by a fractional integration was further applied to a variable location to investigate the effects of background noise input location on information transmission. Our results showed that SR was observed as the information rate reached a maximum value for optimal noise amplitude. The results also showed that the background noise input location and the coefficient b did not alter the maximum information rate generated by SR. The noise amplitude required to the maximum information rate increased when the noise input location was set at distal or the coefficient b was approached to zero from two. It is concluded that the variance of the noise having a frequency component of less than 200 Hz can play a key role in the information processing of sub-threshold signal transmission in the hippocampus.

登録日
2015年02月02日 00:06
登録者