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Responses of Inferior Colliculus Neurons to Double Harmonic Tones

机译:下丘神经元对双谐波音的反应

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摘要

The auditory system can segregate sounds that overlap in time and frequency, if the sounds differ in acoustic properties such as fundamental frequency (f0). However, the neural mechanisms that underlie this ability are poorly understood. Responses of neurons in the inferior colliculus (IC) of the anesthetized chinchilla were measured. The stimuli were harmonic tones, presented alone (single harmonic tones) and in the presence of a second harmonic tone with a different f0 (double harmonic tones). Responses to single harmonic tones exhibited no stimulus-related temporal pattern, or in some cases, a simple envelope modulated at f0. Responses to double harmonic tones exhibited complex slowly modulated discharge patterns. The discharge pattern varied with the difference in f0 and with characteristic frequency. The discharge pattern also varied with the relative levels of the two tones; complex temporal patterns were observed when levels were equal, but as the level difference increased, the discharge pattern reverted to that associated with single harmonic tones. The results indicated that IC neurons convey information about simultaneous sounds in their temporal discharge patterns and that the patterns are produced by interactions between adjacent components in the spectrum. The representation is “low-resolution,” in that it does not convey information about single resolved components from either individual sound.
机译:如果声音的声学特性(例如基本频率(f0))不同,则听觉系统可以隔离时间和频率重叠的声音。但是,对该功能基础的神经机制了解甚少。测量了麻醉的黄鼠的下丘(IC)中神经元的反应。刺激声是谐波声调,单独出现(单声调声调),并且存在具有不同f0的二次谐波声调(双谐波声调)。对单谐波音的响应没有显示与刺激相关的时间模式,或者在某些情况下,仅显示了以f0调制的简单包络。对双谐波音的响应表现出复杂的缓慢调制的放电模式。放电模式随f0的差异和特征频率而变化。放电模式也随两个音调的相对电平而变化;当电平相等时,观察到复杂的时间模式,但是随着电平差的增加,放电模式恢复为与单谐波音相关的模式。结果表明,IC神经元在其瞬时放电模式中传达有关同步声音的信息,并且这些模式是由频谱中相邻分量之间的相互作用产生的。该表示是“低分辨率”的,因为它不传达来自任何一种声音的单个已分解成分的信息。

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