Hair cell regeneration and recovery of function in the avian auditory system.

Scandinavian audiology. Supplementum Pub Date : 1998-01-01
R J Salvi, L Chen, P Trautwein, N Powers, M Shero
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Abstract

Chickens were exposed to an intense pure tone that destroyed the hair cells and tectorial membrane in a crescent shaped patch along the abneural edge of the basilar papilla. During the following weeks, when the hair cells and tectorial membrane were regenerating, psychophysical and electrophysiological measures were obtained to assess the time course and degree of recovery. Immediately after the exposure, the behavioral thresholds were elevated 30-40 dB and auditory temporal integration was greatly reduced; however, both measures fully recovered by 28 days post-exposure. In addition, tone-on-tone masking patterns recovered to normal. Immediately after the exposure, the thresholds of single cochlear ganglion neurons were elevated more than 30 dB, tuning curves were broader than normal, two-tone rate suppression (TTRS) boundary slopes were shallower than normal and spontaneous activity was reduced. Threshold and spontaneous discharge rate fully recovered after the exposure. Tuning and TTRS also recovered significantly in most neurons; however, some units with characteristic frequencies (CFs) near the exposure frequency showed abnormal tuning and TTRS suppression. The regeneration of the hair cells and lower honeycomb layer of the tectorial membrane is associated with considerable recovery of function; however, the incomplete recovery of tuning and TTRS in some neurons may be linked to the incomplete regeneration of the tectorial membrane.

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鸟类听觉系统毛细胞的再生与功能恢复。
鸡暴露在强烈的纯音下,沿基底乳头神经外边缘的新月形斑块上的毛细胞和被膜被破坏。在接下来的几周内,当毛细胞和被膜再生时,通过心理生理和电生理测量来评估恢复的时间和程度。暴露后即刻行为阈值升高30 ~ 40 dB,听觉时间整合显著降低;然而,这两种措施在接触后28天完全恢复。此外,tone-on-tone掩蔽模式恢复正常。暴露后,单个耳蜗神经节神经元阈值升高30 dB以上,调谐曲线较正常变宽,双音速率抑制(TTRS)边界斜率较正常变浅,自发活动减弱。暴露后阈值和自发放电率完全恢复。大多数神经元的调谐和trs也显著恢复;然而,一些特征频率(CFs)接近曝光频率的单元出现异常调谐和trs抑制。毛细胞和被膜下蜂窝层的再生与相当程度的功能恢复有关;然而,一些神经元的调谐和trs的不完全恢复可能与被膜的不完全再生有关。
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Crises. Central auditory tests. Neuroanatomy of tinnitus. Clinical relevance of medial efferent auditory pathways. Selected management approaches to central auditory processing disorders.
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