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泽蛙听觉中脑神经元对声音时间特性和双耳时间差的选择性:一种系统理论方法

Selectivity for temporal characteristics of sound and interaural time difference of auditory midbrain neurons in the grassfrog: a system theoretical approach.

作者信息

Melssen W J, Epping W J

机构信息

Department of Medical Physics and Biophysics, University of Nijmegen, The Netherlands.

出版信息

Hear Res. 1992 Jul;60(2):178-98. doi: 10.1016/0378-5955(92)90020-n.

Abstract

The selectivity for temporal characteristics of sound and interaural time difference (ITD) was investigated in the torus semicircularis (TS) of the grassfrog. Stimuli were delivered by means of a closed sound system and consisted of binaurally presented Poisson distributed condensation clicks, and pseudo-random (RAN) or equidistant (EQU) click trains of which ITD was varied. With RAN and EQU trains, 86% of the TS units demonstrated a clear selectivity for ITD. Most commonly, these units had monotonically increasing ITD-rate functions. In general, units responding to Poisson clicks, responded also to RAN and EQU trains. One category of units which showed strong time-locking had comparable selectivities for ITD with both stimulus ensembles. A second category of units showed a combined selectivity for temporal structure and ITD. These units responded exclusively to EQU trains in a nonsynchronized way. From the responses obtained with the Poisson click ensemble so-called Poisson system kernels were determined, in analogy to the Wiener-Volterra functional expansion for nonlinear systems. The kernel analysis was performed up to second order. Contralateral (CL) first order kernels usually had positive or combinations of positive and negative regions, indicating that the contralateral ear exerted an excitatory or combined excitatory-inhibitory influence upon the neural response. Ipsilateral (IL), units were characterized by first order kernels which were not significantly different from zero, or kernels in which a single negative region was present. A large variety of CL second order kernels has been observed whereas rarely IL second order kernels were encountered. About 35% of the units possessed nonzero second order cross kernels, which indicates that CL and IL neural processes are interacting in a nonlinear way. Units demonstrating a pronounced selectivity for ITD, were generally characterized by positive CL combined with negative IL first order kernels. Findings suggested that, in the grassfrog, neural selectivity for ITD mainly is established by linear interaction of excitatory and inhibitory processes originating from the CL and IL ear, respectively. Units exhibiting strong time-locking to Poisson clicks and RAN and EQU trains had significantly shorter response latencies than moderately time-locking units. In the first category of units, a substantial higher number of nonzero first and second order kernels was observed. It was concluded that nonlinear response properties, as observed in TS units, most likely have to be ascribed to nonlinear characteristics of neural components located in the auditory nervous system peripheral to the torus semicircularis.

摘要

研究了泽蛙半规管隆起(TS)对声音时间特性和双耳时间差(ITD)的选择性。刺激通过封闭声音系统呈现,包括双耳呈现的泊松分布的疏密点击声,以及ITD变化的伪随机(RAN)或等距(EQU)点击序列。对于RAN和EQU序列,86%的TS神经元表现出对ITD的明显选择性。最常见的是,这些神经元具有单调递增的ITD-发放率函数。一般来说,对泊松点击声有反应的神经元,对RAN和EQU序列也有反应。一类表现出强烈时间锁定的神经元,对两种刺激序列的ITD选择性相当。另一类神经元对时间结构和ITD表现出联合选择性。这些神经元仅以非同步方式对EQU序列有反应。根据泊松点击声序列获得的反应,类似于非线性系统的维纳-沃尔泰拉泛函展开,确定了所谓的泊松系统核。核分析进行到二阶。对侧(CL)一阶核通常有正区域或正负区域组合,表明对侧耳对神经反应施加兴奋性或兴奋性-抑制性联合影响。同侧(IL)神经元的特征是一阶核与零无显著差异,或存在单个负区域的核。观察到多种CL二阶核,而很少遇到IL二阶核。约35%的神经元具有非零二阶交叉核,这表明CL和IL神经过程以非线性方式相互作用。对ITD表现出明显选择性的神经元,通常特征是CL一阶核为正,IL一阶核为负。研究结果表明,在泽蛙中,对ITD的神经选择性主要由分别来自对侧耳和同侧耳的兴奋性和抑制性过程的线性相互作用建立。与中等时间锁定的神经元相比,对泊松点击声、RAN和EQU序列表现出强烈时间锁定的神经元的反应潜伏期显著更短。在第一类神经元中,观察到大量非零的一阶和二阶核。得出的结论是,TS神经元中观察到的非线性反应特性,很可能归因于半规管隆起外周听觉神经系统中神经成分的非线性特征。

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