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在噪声抵消时“生理衰退”速率的降低,导致了老年聋的CBA小鼠模型中与年龄相关的时间敏锐度变化。

A diminished rate of "physiological decay" at noise offset contributes to age-related changes in temporal acuity in the CBA mouse model of presbycusis.

作者信息

Ison James R, Allen Paul

机构信息

Department of Brain and Cognitive Sciences, Meliora Hall, University of Rochester, Rochester, New York 14627, USA.

出版信息

J Acoust Soc Am. 2003 Jul;114(1):522-8. doi: 10.1121/1.1577553.

Abstract

The persistence of afferent activity at stimulus offset was examined in mice as a function of age (experiment 1) and noise level (experiment 2), using a procedure devised by von Bekesy to study the physiological decay of afferent activity. Noise offset was presented from 1 to 10 ms (the temporal gap) prior to an acoustic startle stimulus, with an abrupt edge or a linear ramp having the duration of the gap. Noise offset inhibited the startle reflex, this effect declining with age. For young (2-3 months old) and "young-old" mice (18-19 months old), the abrupt offset was always more inhibitory than the ramp, even for the one millisecond gap. In "old-old" mice (24-26 months old) abrupt and ramped offsets were not different until the gap exceeded 4 ms. The behavioral difference between abrupt and ramped decay times did not depend on noise level in young mice (4-5 months old), though overall inhibition increased with level. These data indicate that temporal acuity as measured by this gap detection method is limited in very old mice by their reduced ability to follow the abrupt change in noise level at the beginning of the gap.

摘要

利用冯·贝凯西设计的程序研究传入活动的生理衰减,我们在小鼠中研究了刺激终止时传入活动的持续性与年龄(实验1)和噪声水平(实验2)的关系。在听觉惊吓刺激之前1至10毫秒(时间间隔)呈现噪声终止,具有间隔持续时间的陡峭边缘或线性斜坡。噪声终止抑制惊吓反射,这种效应随年龄增长而下降。对于年轻(2至3个月大)和“年轻老年”小鼠(18至19个月大),即使对于1毫秒的间隔,陡峭终止总是比斜坡更具抑制性。在“老年”小鼠(24至26个月大)中,直到间隔超过4毫秒,陡峭和斜坡终止才没有差异。年轻小鼠(4至5个月大)中,陡峭和斜坡衰减时间之间的行为差异不取决于噪声水平,尽管总体抑制随水平增加。这些数据表明,用这种间隔检测方法测量的时间敏锐度在非常老的小鼠中受到限制,因为它们在间隔开始时跟踪噪声水平突然变化的能力下降。

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