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听觉-运动计时损伤及腹侧运动前皮质刺激后的补偿性重组。

Impairment of auditory-motor timing and compensatory reorganization after ventral premotor cortex stimulation.

机构信息

Motor Control Group, Institute of Cognitive Neuroscience, University College London, London, United Kingdom.

出版信息

PLoS One. 2011;6(6):e21421. doi: 10.1371/journal.pone.0021421. Epub 2011 Jun 29.

Abstract

Integrating auditory and motor information often requires precise timing as in speech and music. In humans, the position of the ventral premotor cortex (PMv) in the dorsal auditory stream renders this area a node for auditory-motor integration. Yet, it remains unknown whether the PMv is critical for auditory-motor timing and which activity increases help to preserve task performance following its disruption. 16 healthy volunteers participated in two sessions with fMRI measured at baseline and following rTMS (rTMS) of either the left PMv or a control region. Subjects synchronized left or right finger tapping to sub-second beat rates of auditory rhythms in the experimental task, and produced self-paced tapping during spectrally matched auditory stimuli in the control task. Left PMv rTMS impaired auditory-motor synchronization accuracy in the first sub-block following stimulation (p<0.01, Bonferroni corrected), but spared motor timing and attention to task. Task-related activity increased in the homologue right PMv, but did not predict the behavioral effect of rTMS. In contrast, anterior midline cerebellum revealed most pronounced activity increase in less impaired subjects. The present findings suggest a critical role of the left PMv in feed-forward computations enabling accurate auditory-motor timing, which can be compensated by activity modulations in the cerebellum, but not in the homologue region contralateral to stimulation.

摘要

整合听觉和运动信息通常需要精确的时间安排,如在言语和音乐中。在人类中,腹侧前运动皮层(PMv)在背侧听觉流中的位置使该区域成为听觉-运动整合的节点。然而,目前尚不清楚 PMv 是否对听觉-运动时间至关重要,以及哪种活动增加有助于在其受到干扰后保持任务表现。16 名健康志愿者参与了两次 fMRI 测量的会话,一次在基线时,一次在左 PMv 或对照区域接受 rTMS(rTMS)后。在实验任务中,受试者将左或右手指同步敲击到亚秒级的听觉节奏节拍率,在对照任务中,受试者在频谱匹配的听觉刺激下产生自我调节的敲击。左 PMv rTMS 在刺激后的第一个亚块中损害了听觉-运动同步准确性(p<0.01,经 Bonferroni 校正),但保留了运动时间和对任务的注意力。与任务相关的活动在同源右侧 PMv 中增加,但不能预测 rTMS 的行为效应。相比之下,在前中线小脑中,在受影响较小的受试者中发现了最明显的活动增加。本研究结果表明,左 PMv 在促进前馈计算中起着关键作用,使听觉-运动时间准确,这可以通过小脑的活动调节来补偿,但不能通过对侧刺激的同源区域来补偿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de94/3127678/aa768dae0425/pone.0021421.g001.jpg

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