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电极与纤维距离对电刺激时神经时间响应的影响。

Effects of electrode-to-fiber distance on temporal neural response with electrical stimulation.

作者信息

Mino Hiroyuki, Rubinstein Jay T, Miller Charles A, Abbas Paul J

机构信息

Department of Otolaryngology-Head and Neck Surgery, The University of Iowa College of Medicine, Iowa City, IA 52242, USA.

出版信息

IEEE Trans Biomed Eng. 2004 Jan;51(1):13-20. doi: 10.1109/TBME.2003.820383.

Abstract

This paper presents an analysis of the effects of the electrode-to-fiber distance on the temporal response properties of an auditory nerve fiber stimulated by electric current pulses. This analysis was based upon results from a computational model of a mammalian auditory nerve fiber axon having 50 nodes of Ranvier, each consisting of 130 stochastic sodium channels and 50 stochastic potassium channels, making it possible to represent the temporal fluctuations of action potential initiation and conduction. A monopolar stimulus electrode was located above a central (26th) node at electrode-to-fiber distances of 1, 4, and 7 mm, while the recording electrode was located at the 36th node. Action potentials (spikes) were generated by the biophysical model using the Crank-Nicholson method to solve a diffusive partial differential equation. By observing the occurrence times of spikes in response to 2000 cathodic monophasic stimulus pulses, temporal jitter (i.e., the standard deviation of spike times) was calculated and the poststimulus time (PST) histogram was generated as well. Furthermore, by computing the PST histogram for each initiation node as functions of space (node number) and time (PST), it was shown that spike initiation was distributed not only spatially but also temporally for stimulus levels producing firing efficiencies (FEs) near 0.5. However, at levels producing FEs near 0.99, while temporal variations approached zero, the spatial distribution of initiating nodes was comparable to that observed for the FE near 0.5. As temporal fluctuations are important for speech coding in cochlear implants, we conclude that spatial characteristics of the electrode-auditory nerve fiber interface may play a significant role in influencing these stochastic temporal processes.

摘要

本文分析了电极与纤维距离对由电流脉冲刺激的听神经纤维时间响应特性的影响。该分析基于一个具有50个郎飞结的哺乳动物听神经纤维轴突的计算模型结果,每个郎飞结由130个随机钠通道和50个随机钾通道组成,从而能够表示动作电位起始和传导的时间波动。一个单极刺激电极位于中央(第26个)结上方,电极与纤维的距离分别为1、4和7毫米,而记录电极位于第36个结处。生物物理模型使用克兰克-尼科尔森方法求解扩散偏微分方程来产生动作电位(尖峰)。通过观察对2000个阴极单相刺激脉冲响应时尖峰的出现时间,计算时间抖动(即尖峰时间的标准差)并生成刺激后时间(PST)直方图。此外,通过计算每个起始结的PST直方图作为空间(结编号)和时间(PST)的函数,结果表明,对于产生接近0.5的发放效率(FE)的刺激水平,尖峰起始不仅在空间上而且在时间上都是分布的。然而,在产生接近0.99的FE的水平时,虽然时间变化接近零,但起始结的空间分布与在FE接近0.5时观察到的情况相当。由于时间波动对人工耳蜗中的语音编码很重要,我们得出结论,电极-听神经纤维界面的空间特征可能在影响这些随机时间过程中起重要作用。

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