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自主手指运动过程中同侧和对侧运动活动的时间动态变化。

Temporal dynamics of ipsilateral and contralateral motor activity during voluntary finger movement.

作者信息

Huang Ming-Xiong, Harrington Deborah L, Paulson Kim M, Weisend Michael P, Lee Roland R

机构信息

Center for Functional Brain Imaging, New Mexico VA Health Care System, Albuquerque, New Mexico 87108, USA.

出版信息

Hum Brain Mapp. 2004 Sep;23(1):26-39. doi: 10.1002/hbm.20038.

Abstract

The role of motor activity ipsilateral to movement remains a matter of debate, due in part to discrepancies among studies in the localization of this activity, when observed, and uncertainty about its time course. The present study used magnetoencephalography (MEG) to investigate the spatial localization and temporal dynamics of contralateral and ipsilateral motor activity during the preparation of unilateral finger movements. Eight right-handed normal subjects carried out self-paced finger-lifting movements with either their dominant or nondominant hand during MEG recordings. The Multi-Start Spatial Temporal multi-dipole method was used to analyze MEG responses recorded during the movement preparation and early execution stage (-800 msec to +30 msec) of movement. Three sources were localized consistently, including a source in the contralateral primary motor area (M1) and in the supplementary motor area (SMA). A third source ipsilateral to movement was located significantly anterior, inferior, and lateral to M1, in the premotor area (PMA) (Brodmann area [BA] 6). Peak latency of the SMA and the ipsilateral PMA sources significantly preceded the peak latency of the contralateral M1 source by 60 msec and 52 msec, respectively. Peak dipole strengths of both the SMA and ipsilateral PMA sources were significantly weaker than was the contralateral M1 source, but did not differ from each other. Altogether, the results indicated that the ipsilateral motor activity was associated with premotor function, rather than activity in M1. The time courses of activation in SMA and ipsilateral PMA were consistent with their purported roles in planning movements.

摘要

运动同侧的运动活动的作用仍然存在争议,部分原因在于不同研究在观察到这种活动时其定位存在差异,以及其时间进程存在不确定性。本研究使用脑磁图(MEG)来探究单侧手指运动准备过程中对侧和同侧运动活动的空间定位和时间动态变化。八名右利手正常受试者在MEG记录期间用其优势手或非优势手进行自定节奏的手指抬起运动。采用多起始空间时间多偶极子方法分析运动准备和运动早期执行阶段(-800毫秒至+30毫秒)记录的MEG反应。一致定位到三个来源,包括对侧初级运动区(M1)和辅助运动区(SMA)中的一个来源。运动同侧的第三个来源位于M1前方、下方和外侧显著位置,在运动前区(PMA)(布罗德曼区[BA]6)。SMA和同侧PMA来源的峰值潜伏期分别比同侧M1来源的峰值潜伏期提前60毫秒和52毫秒。SMA和同侧PMA来源的偶极强度峰值均显著弱于对侧M1来源,但彼此无差异。总之,结果表明同侧运动活动与运动前功能相关,而非与M1中的活动相关。SMA和同侧PMA激活的时间进程与其在运动规划中所声称的作用一致。

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