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麻醉豚鼠腹侧耳蜗核中单单位的等效矩形带宽。

Equivalent-rectangular bandwidth of single units in the anaesthetized guinea-pig ventral cochlear nucleus.

机构信息

Centre for the Neural Basis of Hearing, The Physiological Laboratory, University of Cambridge, CB2 3EG, UK.

出版信息

Hear Res. 2010 Apr;262(1-2):26-33. doi: 10.1016/j.heares.2010.01.015. Epub 2010 Feb 1.

Abstract

Frequency-tuning is a fundamental property of auditory neurons. The filter bandwidth of peripheral auditory neurons determines the frequency resolution of an animal's auditory system. Behavioural studies in animals and humans have defined frequency-tuning in terms of the "equivalent-rectangular bandwidth" (ERB) of peripheral filters. In contrast, most physiological studies report the Q [best frequency/bandwidth] of frequency-tuning curves. This study aims to accurately describe the ERB of primary-like and chopper units in the ventral cochlear nucleus, the first brainstem processing station of the central auditory system. Recordings were made from 1020 isolated single units in the ventral cochlear nucleus of anesthetized guinea pigs in response to pure-tone stimuli which varied in frequency and in sound level. Frequency-threshold tuning curves were constructed for each unit and estimates of the ERB determined using methods previously described for auditory-nerve-fibre data in the same species. Primary-like, primary-notch, and sustained- and transient-chopper units showed frequency selectivity almost identical to that recorded in the auditory nerve. Their tuning at pure-tone threshold can be described as a function of best frequency (BF) by ERB = 0.31 * BF(0.5).

摘要

频率调谐是听觉神经元的基本特性。外周听觉神经元的滤波器带宽决定了动物听觉系统的频率分辨率。动物和人类的行为研究根据外周滤波器的“等效矩形带宽”(ERB)来定义频率调谐。相比之下,大多数生理研究报告的是频率调谐曲线的 Q 值(最佳频率/带宽)。本研究旨在准确描述中枢听觉系统第一个脑干处理站——耳蜗腹核中的原发性和 chopper 单位的 ERB。在麻醉豚鼠的耳蜗腹核中记录了对纯音刺激的反应,这些刺激在频率和声音水平上有所变化。为每个单位构建了频率阈值调谐曲线,并使用以前在同种听觉神经纤维数据中描述的方法来确定 ERB 的估计值。原发性、原发性缺口、持续和瞬态 chopper 单位表现出与记录在听觉神经中的几乎相同的频率选择性。它们在纯音阈值下的调谐可以用 ERB=0.31*BF(0.5) 来描述最佳频率 (BF) 的函数。

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