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人类诱发电位揭示听觉系统的多种适应时间尺度。

Multiple time scales of adaptation in the auditory system as revealed by human evoked potentials.

机构信息

Institute for Brain, Cognition and Behavior (IR3C) and Cognitive Neuroscience Research Group, Department of Psychiatry and Clinical Psychobiology, University of Barcelona, Barcelona, Spain.

出版信息

Psychophysiology. 2011 Jun;48(6):774-83. doi: 10.1111/j.1469-8986.2010.01144.x. Epub 2010 Oct 13.

Abstract

Single neurons in the primary auditory cortex of the cat show faster adaptation time constants to short- than long-term stimulus history. This ability to encode the complex past auditory stimulation in multiple time scales would enable the auditory system to generate expectations of the incoming stimuli. Here, we tested whether large neural populations exhibit this ability as well, by recording human auditory evoked potentials (AEP) to pure tones in a sequence embedding short- and long-term aspects of stimulus history. Our results yielded dynamic amplitude modulations of the P2 AEP to stimulus repetition spanning from milliseconds to tens of seconds concurrently, as well as amplitude modulations of the mismatch negativity AEP to regularity violations. A simple linear model of expectancy accounting for both short- and long-term stimulus history described our results, paralleling the behavior of neurons in the primary auditory cortex.

摘要

猫初级听觉皮层中的单个神经元对短期刺激历史的适应时间常数比长期刺激历史更快。这种在多个时间尺度上对复杂的过去听觉刺激进行编码的能力,使听觉系统能够对传入的刺激产生预期。在这里,我们通过记录人类对纯音序列的听觉诱发电位(AEPs),来测试大的神经元群体是否也具有这种能力,该序列嵌入了刺激历史的短期和长期方面。我们的结果同时产生了从毫秒到数十秒跨度的对刺激重复的 P2AEPs 的动态幅度调制,以及对规则违反的失匹配负波 AEP 的幅度调制。一个简单的期望线性模型,同时考虑了短期和长期的刺激历史,描述了我们的结果,与初级听觉皮层中的神经元行为相似。

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