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人类虚幻手部运动感知的皮质相关性:一项脑磁图研究。

Cortical correlates of illusory hand movement perception in humans: a MEG study.

作者信息

Casini Laurence, Romaiguère Patricia, Ducorps Antoine, Schwartz Denis, Anton Jean-Luc, Roll Jean-Pierre

机构信息

Laboratoire de Neurobiologie humaine, UMR 6149, CNRS - Université de Provence, Pôle 3C, Case B, 13331 Marseille cedex 03, France.

出版信息

Brain Res. 2006 Nov 22;1121(1):200-6. doi: 10.1016/j.brainres.2006.08.124. Epub 2006 Oct 3.

Abstract

The present study aimed to investigate cortical activity associated with perception of illusory hand movements elicited by tendon vibration using magnetoencephalography (MEG) in humans. We compared MEG responses in two conditions of stimulation, "illusion" and "no illusion". In the "illusion" condition, covibration at different frequencies applied on the tendons of the right wrist flexor and extensor muscle groups evoked illusory movements of the hand. In the "no illusion" condition, covibration was delivered at the same frequency on both tendon groups and no movement was perceived. In both experimental conditions, equivalent current dipoles (ECD) were identified in each of four time windows: 0-200 ms, 200-400 ms, 400-600 ms and 600-800 ms. Our data showed similar activation in S1, superior parietal gyrus and supramarginal gyrus in both conditions, whereas the supplementary motor area, M1 and the left angular gyrus were found active in the "illusion" condition only. Our results confirmed the role of posterior parietal areas as well as motor areas in the arising of kinesthetic sensations. The hypothesis of an interaction between the angular gyrus and the primary motor area occurring about 400 ms after the beginning of the stimulation is discussed.

摘要

本研究旨在利用人体脑磁图(MEG)研究与肌腱振动诱发的虚幻手部运动感知相关的皮质活动。我们比较了“虚幻”和“无虚幻”两种刺激条件下的MEG反应。在“虚幻”条件下,对右手腕屈肌和伸肌肌群的肌腱施加不同频率的协同振动,诱发手部的虚幻运动。在“无虚幻”条件下,对两组肌腱施加相同频率的协同振动,未察觉到运动。在两种实验条件下,在四个时间窗(0 - 200毫秒、200 - 400毫秒、400 - 600毫秒和600 - 800毫秒)中的每一个时间窗内都识别出了等效电流偶极(ECD)。我们的数据显示,在两种条件下,初级体感皮层(S1)、顶上叶和缘上回均有类似激活,而仅在“虚幻”条件下发现辅助运动区、初级运动皮层(M1)和左侧角回活跃。我们的结果证实了后顶叶区域以及运动区域在动觉感觉产生中的作用。讨论了刺激开始后约400毫秒时角回与初级运动区之间相互作用的假设。

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