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内毛细胞中自发突触小泡分泌速率对听觉神经纤维模型中信息传递的影响。

Effects of rates of spontaneous synaptic vesicle secretions in inner hair cells on information transmission in an auditory nerve fiber model.

作者信息

Kumsa Parichat, Mino Hiroyuki

机构信息

Graduate School of Engineering, Kanto Gakuin University, 1-50-1 Mutsuura E., Kanazawa-ku, Yokohama 236-8501, Japan.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:2993-6. doi: 10.1109/EMBC.2012.6346593.

Abstract

In this article, we investigate how the rates of spontaneous synaptic vesicle secretions affect information transmission of the spike trains in response to the inner hair cell (IHC) synaptic currents in an auditory nerve fiber (ANF) model through computer simulations. The IHC synaptic currents were modeled by a filtered inhomogeneous Poisson process modulated with sinusoidal functions, while the stochastic ion channel model was incorporated into each node of Ranvier in the ANF model with spiral ganglion. The information rates were estimated from the entropies of the inter-spike intervals of the spike trains to evaluate information transmission in the ANF model. The results show that the information rates increased, reached a maximum, and then decreased as the rate of spontaneous secretion increased, implying a resonance phenomenon dependent on the rate of spontaneous IHC synaptic secretions. In conclusion, this phenomenon similar to the regular stochastic resonance may be observed due to that spontaneous IHC synaptic secretions may act as an origin of fluctuation or noise, and these findings may play a key role in the design of better auditory prostheses.

摘要

在本文中,我们通过计算机模拟研究了自发突触小泡分泌速率如何影响听神经纤维(ANF)模型中响应内毛细胞(IHC)突触电流的尖峰序列的信息传递。IHC突触电流由用正弦函数调制的滤波非齐次泊松过程建模,而随机离子通道模型被纳入具有螺旋神经节的ANF模型的每个郎飞结中。信息速率从尖峰序列的峰间间隔的熵估计,以评估ANF模型中的信息传递。结果表明,随着自发分泌速率的增加,信息速率先增加,达到最大值,然后下降,这意味着存在依赖于自发IHC突触分泌速率的共振现象。总之,由于自发IHC突触分泌可能充当波动或噪声的起源,可能会观察到这种类似于常规随机共振的现象,并且这些发现可能在更好的听觉假体设计中起关键作用。

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