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听觉感受野对动态刺激的短期适应性。

Short-term adaptation of auditory receptive fields to dynamic stimuli.

作者信息

Kvale Mark N, Schreiner Christoph E

机构信息

Department of Physiology, W. M. Keck Center for Integrative Neuroscience, Sloan-Swartz Center for Theoretical Neurobiology, University of California, San Francisco, California 94143-0444, USA.

出版信息

J Neurophysiol. 2004 Feb;91(2):604-12. doi: 10.1152/jn.00484.2003.

Abstract

Short-term adaptation and recovery from adaptation have a strong impact on the processing of dynamic stimuli. Adaptive effects on neuronal activity have been studied most commonly for changes in first-order statistics of stimuli such as stepwise increments or decrements in stimulus amplitude. However, changes in higher moment statistics, such as the variance of the amplitude distribution in visual stimuli, also can invoke pronounced adaptation behavior. We demonstrate here that neurons in the inferior colliculus (ICC) of the cat show adaptation to dynamic auditory stimuli that differ in the variance of their modulation depth distribution. In addition, it is shown that neurons show adaptation to other higher moment statistics (e.g., kurtosis) of the modulation envelope. The time course of adaptation is specific for the altered stimulus property and the direction of parameter change. The use of dynamic stimuli allows an estimate of the effects of the adaptation on the temporal response properties of the neurons. We demonstrate that temporal receptive fields of neurons undergo change during the course of adaptation. We show that adaptation to variance in the ICC has many similarities to that in the retina and suggest that adaptation to variance is a general property of sensory systems that allows them to effectively deal with a nonstationary environment.

摘要

短期适应及从适应状态恢复对动态刺激的处理有强烈影响。对神经元活动的适应性影响,最常针对刺激的一阶统计量变化进行研究,比如刺激幅度的逐步增加或减少。然而,高阶矩统计量的变化,如视觉刺激中幅度分布的方差,也能引发明显的适应行为。我们在此证明,猫下丘(ICC)中的神经元对调制深度分布方差不同的动态听觉刺激表现出适应性。此外,还表明神经元对调制包络的其他高阶矩统计量(如峰度)也有适应性。适应的时间进程因刺激特性的改变和参数变化的方向而异。使用动态刺激能够估计适应对神经元时间响应特性的影响。我们证明,神经元的时间感受野在适应过程中会发生变化。我们表明,ICC 中对方差的适应与视网膜中的适应有许多相似之处,并提出对方差的适应是感觉系统的一个普遍特性,使它们能够有效应对非平稳环境。

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