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首页> 外文期刊>Journal of Neurophysiology >Temporal dynamics of acoustic stimuli enhance amplitude tuning of inferior colliculus neurons.
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Temporal dynamics of acoustic stimuli enhance amplitude tuning of inferior colliculus neurons.

机译:声学刺激的时空动力学增强了下丘神经元的幅度调节。

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摘要

Sounds in real-world situations seldom occur in isolation. In spite of this, most studies in the auditory system have employed sounds that serve to isolate physiological responses, namely, at low rates of stimulation. It is unclear, however, whether the basic response properties of a neuron derived thereof, such as its amplitude and frequency selectivities, are applicable to real-world situations where sounds occur in rapid succession. In the present study, we investigated one of the basic response properties of neurons in the bat inferior colliculus (IC), i.e., the rate-level function, to tone pulses in three different configurations: individual tone pulses of constant amplitude at different rates of stimulation, random-amplitude pulse trains, and dynamic-amplitude-modulated pulse trains the temporal pattern of which was similar to what bats encounter in a behavioral context. We reported that for the majority of IC neurons, amplitude selectivity to tone pulses was dependent on the rate of stimulation. In general, the selectivity was greater at high rates or in a behavioral context than at low rates. For a small population of IC neurons, however, the rate of stimulation had little or no effect on their rate-level functions. Thus for IC neurons, responses to sounds presented at low rates may or may not be used to predict the responses to the same stimuli presented at high rates or in a behavioral context. The possible neural mechanisms underlying the rate-dependent effects are discussed.
机译:在现实世界中,声音很少孤立地出现。尽管如此,听觉系统中的大多数研究都采用了声音来隔离生理反应,即以较低的刺激率。但是,尚不清楚,从其派生的神经元的基本响应特性(例如其幅度和频率选择性)是否适用于声音连续快速出现的现实情况。在本研究中,我们研究了蝙蝠下丘(IC)中神经元的基本响应特性之一,即速率水平函数,对三种不同配置的音调脉冲:不同振幅的恒定振幅的单个音调脉冲刺激,随机振幅脉冲序列和动态振幅调制脉冲序列的时间模式类似于蝙蝠在行为环境中遇到的时间模式。我们报道,对于大多数IC神经元而言,对音调脉冲的幅度选择性取决于刺激的速率。通常,在高比率或行为情况下的选择性大于低比率。但是,对于少数IC神经元而言,刺激的速率对其速率水平功能几乎没有影响或没有影响。因此,对于IC神经元而言,对以低频率呈现的声音的响应可能会或可能不会用于预测对以高频率呈现的相同刺激或在行为环境中的响应。讨论了速率依赖效应的潜在神经机制。

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