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外侧丘系核中双耳强度差的处理:双耳阈值差的作用

Processing of interaural intensity differences in the LSO: role of interaural threshold differences.

作者信息

Park T J, Monsivais P, Pollak G D

机构信息

Department of Zoology, University of Texas, Austin 78712, USA.

出版信息

J Neurophysiol. 1997 Jun;77(6):2863-78. doi: 10.1152/jn.1997.77.6.2863.

Abstract

Cells in the lateral superior olive (LSO) are known to be sensitive to interaural intensity differences (IIDs) in that they are excited by IIDs that favor the ipsilateral ear and inhibited by IIDs that favor the contralateral ear. For each LSO neuron there is a particular IID that causes a complete inhibition of discharges, and the IID of complete inhibition varies from neuron to neuron. This variability in IID sensitivity among LSO neurons is a key factor that allows for the coding of a variety of IIDs among the population of cells. A fundamental question concerning the coding of IIDs is: how does each cell in the LSO derive its particular IID sensitivity? Although there have been a large number of neurophysiological studies on the LSO, this question has received little attention. Indeed, the only reports that have directly addressed this question are those of Reed and Blum, who modeled the binaural properties of LSO neurons and proposed that the IID at which discharges are completely suppressed should correspond to the difference in threshold between the excitatory, ipsilateral and inhibitory, contralateral inputs that innervate each LSO cell. The main purpose of this study was to test the threshold difference hypothesis proposed by Reed and Blum by recording responses to monaural stimulation and to IIDs from single cells in the LSO of the mustache bat. Our results show that although the IID sensitivities of some LSO cells correspond to the difference in threshold between the excitatory and inhibitory ears, in the majority of cells the difference in thresholds did not correspond to the cell's IID sensitivity. The results lead us to propose two models to account for IID sensitivities. One model is similar to that proposed by Reed and Blum and emphasizes differences in the thresholds of the excitatory and inhibitory inputs. This model accounts for the minority of cells in which the IID of complete inhibition corresponded to the difference in threshold of the inputs from the two ears. The other model, which accounts for the cells in which the IID of complete inhibition did not correspond to the difference in the thresholds of the inputs from the two ears (the majority of cells), places emphasis on differences in latencies of the excitatory and inhibitory inputs. The models incorporate features that are concordant with the known properties of the neurons that project to the LSO and together can account for the diversity of IID sensitivities among the population of LSO neurons.

摘要

已知外侧上橄榄核(LSO)中的细胞对双耳强度差(IID)敏感,即它们会被有利于同侧耳的IID所兴奋,而被有利于对侧耳的IID所抑制。对于每个LSO神经元,都存在一个特定的IID会导致放电完全抑制,且完全抑制的IID在神经元之间各不相同。LSO神经元之间IID敏感性的这种变异性是一个关键因素,它使得细胞群体能够编码各种IID。关于IID编码的一个基本问题是:LSO中的每个细胞是如何获得其特定的IID敏感性的?尽管已经有大量关于LSO的神经生理学研究,但这个问题几乎没有受到关注。实际上,唯一直接解决这个问题的报告是里德(Reed)和布卢姆(Blum)的报告,他们对LSO神经元的双耳特性进行了建模,并提出放电被完全抑制时的IID应对应于支配每个LSO细胞的兴奋性同侧输入和抑制性对侧输入之间的阈值差异。本研究的主要目的是通过记录对单耳刺激和来自髯蝠LSO中单个细胞的IID的反应,来检验里德和布卢姆提出的阈值差异假说。我们的结果表明,虽然一些LSO细胞的IID敏感性对应于兴奋性耳和抑制性耳之间的阈值差异,但在大多数细胞中,阈值差异并不对应于细胞的IID敏感性。这些结果促使我们提出两个模型来解释IID敏感性。一个模型与里德和布卢姆提出的模型类似,强调兴奋性和抑制性输入的阈值差异。这个模型解释了少数细胞,其中完全抑制的IID对应于来自两只耳朵的输入的阈值差异。另一个模型解释了完全抑制的IID不对应于来自两只耳朵的输入的阈值差异的细胞(大多数细胞),它强调兴奋性和抑制性输入的潜伏期差异。这些模型纳入了与投射到LSO的神经元的已知特性相一致的特征,并且共同可以解释LSO神经元群体中IID敏感性的多样性。

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