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近期对动物暂时性阈移(TTS)和永久性阈移(PTS)的研究。

Recent studies of temporary threshold shift (TTS) and permanent threshold shift (PTS) in animals.

作者信息

Clark W W

机构信息

Central Institute for the Deaf, St. Louis, Missouri 63155.

出版信息

J Acoust Soc Am. 1991 Jul;90(1):155-63. doi: 10.1121/1.401309.

Abstract

It is well known that excessive exposure to noise results in temporary and/or permanent changes in hearing sensitivity in both human and animal subjects. The purpose of this review is to describe the major findings from laboratory studies of experimentally induced hearing losses, both temporary and permanent, resulting from exposure to noise in animal subjects which have been published since the report of Kryter et al. (1966). The data reviewed support the following general statements: (1) The chinchilla is the most widely used and most appropriate animal model for studies of noise-induced hearing loss; (2) with continuous exposures to moderate-level noise, thresholds reach asymptotic levels (ATS) within 18-24 h; (3) permanent threshold shifts, however, depend upon the level, frequency, and the duration of exposure; (4) below a "critical level" of about 115 dB, permanent threshold shift (PTS) and cell loss are generally related to the total energy in continuous exposures; (5) periodic rest periods inserted in an exposure schedule are protective and result in less hearing loss and cochlear damage than equal energy continuous exposures; and (6) under some schedules of periodic exposure, threshold shifts increase over the first few days of exposure, then recover as much as 30 dB as the exposure continues.

摘要

众所周知,过度暴露于噪声会导致人类和动物受试者的听力敏感度发生暂时和/或永久性变化。本综述的目的是描述自Kryter等人(1966年)的报告以来发表的关于动物受试者因暴露于噪声而导致的实验性听力损失(包括暂时性和永久性)的实验室研究的主要发现。所审查的数据支持以下一般性陈述:(1)龙猫是研究噪声性听力损失最广泛使用且最合适的动物模型;(2)持续暴露于中等强度噪声时,阈值在18 - 24小时内达到渐近水平(ATS);(3)然而,永久性阈值偏移取决于暴露的水平、频率和持续时间;(4)在约115分贝的“临界水平”以下,永久性阈值偏移(PTS)和细胞损失通常与连续暴露中的总能量有关;(5)在暴露时间表中插入周期性休息期具有保护作用,与同等能量的连续暴露相比,听力损失和耳蜗损伤更小;(6)在某些周期性暴露时间表下,阈值偏移在暴露的最初几天会增加,然后随着暴露的继续最多可恢复30分贝。

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