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Dichotic sound localization properties of duration-tuned neurons in the inferior colliculus of the big brown bat

机译:持续时间调谐的神经元在大棕蝙蝠下丘的分叉声定位特性

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摘要

Electrophysiological studies on duration-tuned neurons (DTNs) from the mammalian auditory midbrain have typically evoked spiking responses from these cells using monaural or free-field acoustic stimulation focused on the contralateral ear, with fewer studies devoted to examining the electrophysiological properties of duration tuning using binaural stimulation. Because the inferior colliculus (IC) receives convergent inputs from lower brainstem auditory nuclei that process sounds from each ear, many midbrain neurons have responses shaped by binaural interactions and are selective to binaural cues important for sound localization. In this study, we used dichotic stimulation to vary interaural level difference (ILD) and interaural time difference (ITD) acoustic cues and explore the binaural interactions and response properties of DTNs and non-DTNs from the IC of the big brown bat (Eptesicus fuscus). Our results reveal that both DTNs and non-DTNs can have responses selective to binaural stimulation, with a majority of IC neurons showing some type of ILD selectivity, fewer cells showing ITD selectivity, and a number of neurons showing both ILD and ITD selectivity. This study provides the first demonstration that the temporally selective responses of DTNs from the vertebrate auditory midbrain can be selective to binaural cues used for sound localization in addition to having spiking responses that are selective for stimulus frequency, amplitude, and duration.
机译:来自哺乳动物听觉中脑的持续时间调谐神经元(DTN)的电生理研究通常会通过集中于对侧耳朵的单耳或自由场声刺激引起这些细胞的尖峰反应,而较少的研究致力于研究使用双耳刺激。由于下丘脑(IC)从下脑干听觉核接收会聚的输入信号,该输入信号处理来自每个耳朵的声音,因此许多中脑神经元的反应受到双耳相互作用的影响,并且对对声音定位重要的双耳线索具有选择性。在这项研究中,我们使用分叉刺激来改变耳间水平差(ILD)和耳间时间差(ITD)声音提示,并通过大棕蝙蝠(Eptesicus fuscus)的IC探索DTN和非DTN的双耳相互作用和响应特性。 )。我们的研究结果表明DTN和非DTN都能对双耳刺激产生选择性反应,大多数IC神经元表现出某种ILD选择性,较少的细胞表现出ITD选择性,而许多神经元同时表现出ILD和ITD选择性。这项研究提供了第一个证明,即来自脊椎动物听觉中脑的DTN的时间选择性响应除了对刺激频率,幅度和持续时间具有选择性的尖峰响应外,还可以对用于声音定位的双耳线索具有选择性。

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