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耳部产生的畸变:其在发育过程中的出现与演变

Distortion generated by the ear: its emergence and evolution during development.

作者信息

Tubach M, McGee J, Walsh E J

机构信息

Boy's Town National Research Hospital, Omaha, Neb. 68131, USA.

出版信息

Laryngoscope. 1996 Jul;106(7):822-30. doi: 10.1097/00005537-199607000-00007.

Abstract

Physiologically vulnerable active mechanics associated with the transduction of sounds in adults distort cochlear output. Specifically, frequencies not present in the incoming acoustic signal are represented in its output (ie., the spike trains of auditory nerve fibers). The purpose of this investigation was to study the appearance and evolution of intermodulation distortion during development. Established surgical and electrophysiologic techniques were used to record the extracellular electrical activity of individual auditory nerve fibers from developing kittens. Discharge-rate or synchrony-based responses to two tones (f1 and f2) presented simultaneously at various ratios of f2/f1 were recorded. The cubic distortion product (CDP; 2f1-f2, where f1<f2) and the difference tone (f2-f1) were the intermodulation distortion products (DPs) emphasized in the investigation. CDPs were first observed nearly 10 days after the earliest auditory nerve fiber responses to simple tone-burst stimuli could be elicited in neonatal cats. Furthermore, the spectrum of DPs generated in the cochlea changed dramatically during the second postnatal week and achieved adultlike characteristics after the first postnatal month. Findings reported here support the notion that cochlear transduction is initially linear in neonatal cats, possibly representing a critical period of auditory development, and that the content of distortion-related spectral information carried in auditory nerve fiber spike trains increases during development, in concert with other peripheral auditory attributes.

摘要

与成人声音传导相关的生理易损主动力学会扭曲耳蜗输出。具体而言,传入声信号中不存在的频率会在其输出(即听神经纤维的脉冲序列)中表现出来。本研究的目的是研究发育过程中互调失真的出现和演变。采用成熟的外科手术和电生理技术记录发育中小猫单个听神经纤维的细胞外电活动。记录了在不同f2/f1比值下同时呈现的两个音调(f1和f2)基于放电率或同步性的反应。三次失真产物(CDP;2f1 - f2,其中f1 < f2)和差频(f2 - f1)是本研究中强调的互调失真产物(DPs)。在新生猫最早能对简单音爆刺激产生听神经纤维反应后近10天首次观察到CDPs。此外,耳蜗中产生的DPs频谱在出生后第二周发生了显著变化,并在出生后第一个月后达到类似成人的特征。此处报告的研究结果支持以下观点:新生猫的耳蜗传导最初是线性的,这可能代表了听觉发育的关键时期,并且听神经纤维脉冲序列中携带的与失真相关的频谱信息内容在发育过程中增加,与其他外周听觉属性一致。

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