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单个电感觉神经元内失谐八度音程处的节拍编码。

Beat encoding at mistuned octaves within single electrosensory neurons.

作者信息

Barayeu Alexandra, Schäfer Ramona, Grewe Jan, Benda Jan

机构信息

Neuroethology, Institute for Neurobiology, Eberhard Karls University, 72076 Tübingen, Germany.

Bernstein Center for Computational Neuroscience Tübingen, 72076 Tübingen, Germany.

出版信息

iScience. 2023 May 13;26(7):106840. doi: 10.1016/j.isci.2023.106840. eCollection 2023 Jul 21.

Abstract

Beats are slow periodic amplitude modulations resulting from the superposition of two spectrally close periodic signals. The difference frequency between the signals sets the frequency of the beat. A field study in the electric fish showed the behavioral relevance of very high difference frequencies. Contrary to expectations from previous studies, our electrophysiological data show strong responses of p-type electroreceptor afferents whenever the difference frequency approaches integer multiples (mistuned octaves) of the fish's own electric field frequency (carrier). Mathematical reasoning and simulations show that common approaches to extract amplitude modulations, such as Hilbert transform or half-wave rectification, are not sufficient to explain the responses at carrier octaves. Instead, half-wave rectification needs to be smoothed out, for example by a cubic function. Because electroreceptive afferents share many properties with auditory nerve fibers, these mechanisms may underly the human perception of beats at mistuned octaves as described by Ohm and Helmholtz.

摘要

拍频是由两个频谱接近的周期性信号叠加产生的缓慢周期性幅度调制。信号之间的差频决定了拍频的频率。一项对电鱼的实地研究表明了非常高的差频在行为上的相关性。与先前研究的预期相反,我们的电生理数据显示,每当差频接近鱼自身电场频率(载波)的整数倍(失谐八度)时,p型电感受器传入神经就会产生强烈反应。数学推理和模拟表明,诸如希尔伯特变换或半波整流等提取幅度调制的常用方法不足以解释载波八度处的反应。相反,半波整流需要进行平滑处理,例如通过三次函数。由于电感受传入神经与听觉神经纤维有许多共同特性,这些机制可能是欧姆和亥姆霍兹所描述的人类对失谐八度拍频感知的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dd2/10331418/170e84252adb/gr1.jpg

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