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在言语准备过程中调节感觉和运动皮层的活动。

Modulation of sensory and motor cortex activity during speech preparation.

机构信息

Department of Psychology, Tulane University, New Orleans, LA, USA.

出版信息

Eur J Neurosci. 2011 Mar;33(5):1001-11. doi: 10.1111/j.1460-9568.2010.07585.x. Epub 2011 Jan 24.

Abstract

Previous studies have shown that speaking affects auditory and motor cortex responsiveness, which may reflect the influence of motor efference copy. If motor efference copy is involved, it would also likely influence auditory and motor cortical activity when preparing to speak. We tested this hypothesis by using auditory event-related potentials and transcranial magnetic stimulation (TMS) of the motor cortex. In the speech condition subjects were visually cued to prepare a vocal response to a subsequent target, which was compared to a control condition without speech preparation. Auditory and motor cortex responsiveness at variable times between the cue and target were probed with an acoustic stimulus (Experiment 1, tone or consonant-vowels) or motor cortical TMS (Experiment 2). Acoustic probes delivered shortly before targets elicited a fronto-central negative potential in the speech condition. Current density analysis showed that auditory cortical activity was attenuated at the beginning of the slow potential in the speech condition. Sensory potentials in response to probes had shorter latencies (N100) and larger amplitudes (P200) when consonant-vowels matched the sound of cue words. Motor cortex excitability was greater in the speech than in the control condition at all time points before picture onset. The results suggest that speech preparation induces top-down regulation of sensory and motor cortex responsiveness, with different time courses for auditory and motor systems.

摘要

先前的研究表明,说话会影响听觉和运动皮层的反应性,这可能反映了运动传出副本的影响。如果涉及运动传出副本,那么在准备说话时,它也可能会影响听觉和运动皮层的活动。我们通过使用听觉事件相关电位和经颅磁刺激(TMS)来测试这一假设。在说话条件下,受试者通过视觉提示准备对随后的目标进行声音反应,与没有说话准备的对照条件进行比较。在提示和目标之间的不同时间点,使用声刺激(实验 1,音或辅音-元音)或运动皮质 TMS(实验 2)探测听觉和运动皮质的反应性。在目标之前不久发出的声探针会在说话条件下引起额-中央负电位。电流密度分析表明,在说话条件下,慢电位开始时听觉皮质活动减弱。当辅音-元音与提示词的声音匹配时,响应探针的感觉电位具有更短的潜伏期(N100)和更大的振幅(P200)。在图片出现之前的所有时间点,运动皮质兴奋性在说话条件下均大于对照条件。结果表明,说话准备会引起感觉和运动皮质反应性的自上而下调节,听觉和运动系统的时间进程不同。

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