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学习辨别调制率过程中的听觉皮层可塑性。

Auditory cortical plasticity in learning to discriminate modulation rate.

作者信息

van Wassenhove Virginie, Nagarajan Srikantan S

机构信息

Division of Biology, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

J Neurosci. 2007 Mar 7;27(10):2663-72. doi: 10.1523/JNEUROSCI.4844-06.2007.

Abstract

The discrimination of temporal information in acoustic inputs is a crucial aspect of auditory perception, yet very few studies have focused on auditory perceptual learning of timing properties and associated plasticity in adult auditory cortex. Here, we trained participants on a temporal discrimination task. The main task used a base stimulus (four tones separated by intervals of 200 ms) that had to be distinguished from a target stimulus (four tones with intervals down to approximately 180 ms). We show that participants' auditory temporal sensitivity improves with a short amount of training (3 d, 1 h/d). Learning to discriminate temporal modulation rates was accompanied by a systematic amplitude increase of the early auditory evoked responses to trained stimuli, as measured by magnetoencephalography. Additionally, learning and auditory cortex plasticity partially generalized to interval discrimination but not to frequency discrimination. Auditory cortex plasticity associated with short-term perceptual learning was manifested as an enhancement of auditory cortical responses to trained acoustic features only in the trained task. Plasticity was also manifested as induced non-phase-locked high gamma-band power increases in inferior frontal cortex during performance in the trained task. Functional plasticity in auditory cortex is here interpreted as the product of bottom-up and top-down modulations.

摘要

对听觉输入中时间信息的辨别是听觉感知的一个关键方面,但很少有研究关注成人听觉皮层中时间特性的听觉感知学习及相关可塑性。在此,我们让参与者进行一项时间辨别任务训练。主要任务使用一个基础刺激(四个音调,间隔为200毫秒),必须将其与目标刺激(间隔低至约180毫秒的四个音调)区分开来。我们发现,参与者的听觉时间敏感性在短时间训练(3天,每天1小时)后有所提高。通过脑磁图测量发现,学习辨别时间调制率伴随着对训练刺激的早期听觉诱发反应的系统幅度增加。此外,学习和听觉皮层可塑性部分地推广到间隔辨别,但未推广到频率辨别。与短期感知学习相关的听觉皮层可塑性仅在训练任务中表现为听觉皮层对训练声学特征反应的增强。可塑性还表现为在训练任务执行期间,额下回诱导的非锁相高伽马波段功率增加。听觉皮层的功能可塑性在此被解释为自下而上和自上而下调制的产物。

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