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首页> 外文期刊>Journal of Neurophysiology >Responses of cochlear nucleus units in the chinchilla to iterated rippled noises: analysis of neural autocorrelograms.
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Responses of cochlear nucleus units in the chinchilla to iterated rippled noises: analysis of neural autocorrelograms.

机译:黄鼠耳蜗核单位对反复波纹噪声的响应:神经自相关图分析。

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摘要

Temporal encoding of stimulus features related to the pitch of iterated rippled noises was studied for single units in the chinchilla cochlear nucleus. Unlike other periodic complex sounds that produce pitch, iterated rippled noises have neither periodic waveforms nor highly modulated envelopes. Infinitely iterated rippled noise (IIRN) is generated when wideband noise (WBN) is delayed (tau), attenuated, and then added to (+) or subtracted from (-) the undelayed WBN through positive feedback. The pitch of IIRN[+, tau, -1 dB] is at 1/tau, whereas the pitch of IIRN[-, tau, -1 dB] is at 1/2tau. Temporal responses of cochlear nucleus units were measured using neural autocorrelograms. Synchronous responses as shown by peaks in neural autocorrelograms that occur at time lags corresponding to the IIRN tau can be observed for both primarylike and chopper unit types. Comparison of the neural autocorrelograms in response to IIRN[+, tau, -1 dB] and IIRN[-, tau, -1 dB] indicates that the temporal discharge of primarylike units reflects the stimulus waveform fine structure, whereas the temporal discharge patterns of chopper units reflect the stimulus envelope. The pitch of IIRN[+/-, tau, -1 dB] can be accounted for by the temporal discharge patterns of primarylike units but not by the temporal discharge of chopper units. To quantify the temporal responses, the height of the peak in the neural autocorrelogram at a given time lag was measured as normalized rate. Although it is well documented that chopper units give larger synchronous responses than primarylike units to the fundamental frequency of periodic complex stimuli, the largest normalized rates in response to IIRN[+, tau, -1 dB] were obtained for primarylike units, not chopper units. The results suggest that if temporal encoding is important in pitch processing, then primarylike units are likely to be an important cochlear nucleus subsystem that carries the pitch-related information to higher auditory centers.
机译:对黄鼠耳蜗核中单个单位研究了与迭代波纹噪声的音调相关的刺激特征的时间编码。与产生音调的其他周期性复杂声音不同,迭代的波纹噪声既没有周期性波形也没有高度调制的包络。当宽带噪声(WBN)延迟(tau),衰减然后通过正反馈加到(+)或从(-)中减去时,将生成无限迭代的波纹噪声(IIRN)。 IIRN [+,tau,-1 dB]的音高为1 / tau,而IIRN [-,tau,-1 dB]的音高为1 / 2tau。使用神经自相关图测量耳蜗核单位的时间响应。对于初级类和斩波单元类型,都可以观察到在对应于IIRN tau的时间滞后出现的神经自相关图中的峰值所示的同步响应。对IIRN [+,tau,-1 dB]和IIRN [-,tau,-1 dB]响应的神经自相关图的比较表明,初级单元的瞬时放电反映了刺激波形的精细结构,而IIRN [-,tau,-1 dB]斩波器反映了激励范围。 IIRN [+/-,tau,-1 dB]的音高可以通过初级单元的瞬时放电模式来解释,而不能通过斩波器单元的瞬时放电来解释。为了量化时间响应,将在给定时间滞后的神经自相关图中的峰高测量为归一化率。尽管有充分的文献证明,斩波器单元对周期性复杂刺激的基本频率给出的同步响应要比原阶单元大,但对于原阶单元而不是斩波单元,对IIRN [+,tau,-1 dB]的响应最大归一化率。结果表明,如果时间编码在音调处理中很重要,那么类似初级的单元很可能是一个重要的耳蜗核子系统,它将音高相关的信息传递到更高的听觉中心。

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