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大鼠听觉功能的时间敏锐度:噪声中的短暂间隙对反射的抑制作用。

Temporal acuity in auditory function in the rat: reflex inhibition by brief gaps in noise.

作者信息

Ison J R

出版信息

J Comp Physiol Psychol. 1982 Dec;96(6):945-54.

PMID:7153390
Abstract

The acoustic startle reflex in the rat is inhibited if a relatively weak stimulus precedes the startle-eliciting tone burst. This research explored the effect of brief silent periods (gaps) in white noise on the startle reflex, in order to describe the limits of temporal resolution in the auditory system of the rat. Brief silent periods did depress reflex behavior, and two responsible processes were identified. One was most evident at a 190-msec lead time between gap and startle tone. It yielded a linear decrement in reflex expression over a dynamic range of 0-7 msec, and an estimate for the threshold of temporal acuity of 3.5 msec. The second was evident primarily at a 40-msec interstimulus interval and had a linear effect over a dynamic range of at least 40 msec. Very brief gaps had a greater inhibitory effect at the 190-msec interval between gap and startle stimulus; prolonged gaps had their greater effect at the 40-msec interval. The first process was identified as reflex inhibition, which is sensitive to the sensory properties of the lead stimulus. The second process was identified as sensory adaptation, produced by noise exposure but unmasked by silence.

摘要

如果在引发惊跳反应的纯音脉冲之前出现相对较弱的刺激,大鼠的听觉惊跳反射会受到抑制。本研究探讨了白噪声中的短暂静音期(间隙)对惊跳反射的影响,以描述大鼠听觉系统的时间分辨率极限。短暂静音期确实会抑制反射行为,并确定了两个相关过程。其中一个在间隙与惊跳音之间的提前时间为190毫秒时最为明显。它在0至7毫秒的动态范围内使反射表现呈线性下降,并且时间敏锐度阈值估计为3.5毫秒。第二个主要在刺激间隔为40毫秒时明显,并且在至少40毫秒的动态范围内具有线性效应。非常短暂的间隙在间隙与惊跳刺激之间的190毫秒间隔时具有更大的抑制作用;延长的间隙在40毫秒间隔时具有更大的作用。第一个过程被确定为反射抑制,它对前置刺激的感觉特性敏感。第二个过程被确定为感觉适应,由噪声暴露产生但不会因静音而被掩盖。

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