神经抑制使蝙蝠下丘神经元的听觉空间选择性增强。

X M Zhou, P H Jen
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引用次数: 18

摘要

本研究采用双音抑制模式,考察了神经抑制在大棕蝠下丘神经元听觉空间选择性中的作用。双音抑制减少了听觉空间反应区,但增加了下丘神经元方向敏感曲线的斜率。下丘神经元具有定向选择性和半场定向敏感性曲线。方向选择曲线的峰值总是比最小值至少大50%。半场定向灵敏度曲线从同侧角度上升50%以上,在对侧角度范围内达到平稳或下降不到50%。双音抑制不改变定向选择曲线,但将大部分半场定向灵敏度曲线改变为定向选择曲线。无论有无双音抑制,听觉空间选择性都随着最佳兴奋频率的增加而增加。在兴奋性和抑制性最佳频率差异较小的神经元中,双音抑制对听觉空间选择性的锐化作用更大。双音抑制对听觉空间选择性的影响随抑制音调强度的增大而增大,但随抑制性音调间隔的增大而减小。讨论了这些发现在蝙蝠回声定位中的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neural inhibition sharpens auditory spatial selectivity of bat inferior collicular neurons.

This study examines the role of neural inhibition in auditory spatial selectivity of inferior collicular neurons of the big brown bat, Eptesicus fuscus, using a two-tone inhibition paradigm. Two-tone inhibition decreases auditory spatial response areas but increases the slopes of directional sensitivity curves of inferior collicular neurons. Inferior collicular neurons have either directionally-selective or hemifield directional sensitivity curves. A directionally-selective curve always has a peak which is at least 50% larger than the minimum. A hemifield directional sensitivity curve rises from an ipsilateral angle by more than 50% and either reaches a plateau or declines by less than 50% over a range of contralateral angles. Two-tone inhibition does not change directionally-selective curves but changes most hemifield directional sensitivity curves into directionally-selective curves. Auditory spatial selectivity determined both with and without two-tone inhibition increases with increasing best-excitatory frequency. Sharpening of auditory spatial selectivity by two-tone inhibition is larger for neurons with smaller differences between excitatory and inhibitory best frequencies. The effect of two-tone inhibition on auditory spatial selectivity increases with increasing inhibitory tone intensity but decreases with increasing intertone interval. The implications of these findings in bat echolocation are discussed.

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