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听觉诱发电位将快速感知学习与无学习的任务重复区分开来。

Auditory evoked potentials dissociate rapid perceptual learning from task repetition without learning.

机构信息

Rotman Research Institute, Baycrest Centre, Toronto, Ontario, Canada Toronto Rehabilitation Institute, Toronto, Ontario, Canada.

出版信息

Psychophysiology. 2011 Jun;48(6):797-807. doi: 10.1111/j.1469-8986.2010.01139.x. Epub 2010 Nov 5.

Abstract

Performance improvement during an hour of auditory perceptual training is accompanied by rapid physiological changes. These changes may reflect learning or simply task repetition independent of learning. We assessed the contribution of learning and task repetition to changes in auditory evoked potentials during a difficult speech identification task and an easy tone identification task. We posited that only task repetition effects would occur in the tone task but that task repetition and learning would interact in the speech task. Speech identification improved with practice (increased sensitivity d' with a constant response bias β). This behavioral improvement coincided with a decrease in the amplitude of sensory evoked responses (N1, P2) and a decrease in the amplitude of a slow wave (peak=320 ms after onset) over the left frontal and parietal sites. Results show rapid physiological changes associated with learning, distinct from changes related to task repetition.

摘要

在一小时的听觉感知训练中,表现的提高伴随着快速的生理变化。这些变化可能反映了学习,也可能仅仅是与学习无关的任务重复。我们评估了在一项困难的语音识别任务和一项简单的音调识别任务中,听觉诱发电位变化中学习和任务重复的贡献。我们假设,在音调任务中只会出现任务重复的影响,而在语音任务中,任务重复和学习会相互作用。随着练习,语音识别能力提高(敏感性 d'增加,响应偏置β不变)。这种行为上的改善与感觉诱发电反应(N1、P2)的幅度降低以及左额顶区慢波(起始后 320 毫秒出现峰值)的幅度降低同时发生。结果表明,与学习相关的快速生理变化与与任务重复相关的变化不同。

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