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Temporal Masking Reveals Properties of Sound-Evoked Inhibition in Duration-Tuned Neurons of the Inferior Colliculus

机译:时间掩蔽揭示了持续性下丘神经元的声诱发抑制的特性。

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摘要

The inferior colliculus (IC) is the first place in the central auditory pathway where duration-selective neurons are found. Previous neuropharmacological and electrophysiological studies have shown that they are created there and have led to a conceptual model in which excitatory and inhibitory inputs are offset in time so that the cell fires only when sound duration is such that onset- and offset-evoked excitation coincide; the response is suppressed by inhibition at other durations. We tested predictions from the model using paired tone stimulation and extracellular recording in the IC of the big brown bat,Eptesicus fuscus. Responses to a best duration (BD) tone were used as a probe to examine the strength and time course of inhibition activated by a nonexcitatory (NE) tone of the same frequency but differing in duration. As the relative time between the BD and NE tones was varied, the activity evoked by the BD tone was affected in ways comparable with backward, simultaneous, and forward masking. Responses to the BD tone were completely suppressed at short interstimulus intervals when the BD tone preceded the NE tone. Suppression was also seen when the stimuli temporally overlapped and summed and at intervals when the BD tone followed the NE tone. The results show that duration-selective neurons receive an onset-evoked, inhibitory input that precedes their excitatory input. The period of leading inhibition was correlated with BD and first spike latency. The results suggest how inhibition in the CNS could explain temporal masking phenomena, including backward masking.
机译:下丘脑(IC)是在中央听觉通路中发现持续时间选择性神经元的第一位。先前的神经药理学和电生理学研究表明,它们是在此处创建的,并导致了一种概念模型,其中兴奋性和抑制性输入在时间上相互抵消,因此只有在声音持续时间使得起始和偏移诱发的兴奋重合时,细胞才会激发。通过在其他持续时间的抑制来抑制反应。我们使用配对的音调刺激和大棕蝙蝠(Eptesicus fuscus)的IC中的细胞外记录测试了该模型的预测。使用对最佳持续时间(BD)音调的响应作为探针,以检查由相同频率但持续时间不同的非兴奋性(NE)音调激活的抑制作用的强度和时间过程。由于BD和NE音调之间的相对时间有所变化,因此BD音调引起的活动受到与后向,同时和前向掩膜相当的方式的影响。当BD音调先于NE音调时,在短的激励间隔内完全抑制了BD音调的响应。当刺激在时间上重叠和相加,并且在BD音调跟随NE音调间隔时,也会出现抑制。结果表明,持续时间选择性神经元在其兴奋性输入之前会收到起病诱发的抑制性输入。前导抑制期与BD和首次峰潜伏期相关。结果表明中枢神经系统的抑制作用可以解释时间掩盖现象,包括向后掩盖。

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