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单侧手指运动期间辅助运动区连接的半球不对称性。

Hemispheric asymmetry in supplementary motor area connectivity during unilateral finger movements.

作者信息

Rogers Baxter P, Carew John D, Meyerand M Elizabeth

机构信息

Department of Medical Physics, Medical School, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Neuroimage. 2004 Jun;22(2):855-9. doi: 10.1016/j.neuroimage.2004.02.027.

Abstract

Studies of unilateral finger movement in right-handed subjects have shown asymmetrical patterns of activation in primary motor cortex. Some studies have measured a similar asymmetry in the supplementary motor area (SMA), but others have not. To shed more light on the symmetry of function in the SMA, we used path analysis of functional MRI data to investigate effective connectivity during a unilateral finger movement task. We observed a slight asymmetry in task activation: left SMA was equally active during movement of either hand, while right SMA was more active for left-hand movement, suggesting a dominant role of left SMA. In addition, we tested for a corresponding asymmetry in the influence of SMA on sensorimotor cortex (SMC) using a path model based on the well-established principle that SMA is involved in motor control and SMC in execution. We observed that the influence of left SMA on left SMC increased during right-hand movement, and the influence of left SMA on right SMC increased during left-hand movement. However, there was no significant hand-dependent change in the influences of the right SMA. This asymmetry in connectivity implies that left SMA does play a dominant role in unilateral movements of either hand in right handers. The experiment also provides a basis for further studies of motor system connectivity in healthy or patient populations.

摘要

对右利手受试者单侧手指运动的研究表明,初级运动皮层存在不对称的激活模式。一些研究在辅助运动区(SMA)中测量到了类似的不对称性,但其他研究则未发现。为了更深入了解SMA功能的对称性,我们使用功能磁共振成像数据的路径分析来研究单侧手指运动任务期间的有效连接性。我们观察到任务激活存在轻微的不对称性:左手或右手运动时,左侧SMA的激活程度相同,而右手运动时右侧SMA的激活程度更高,这表明左侧SMA起主导作用。此外,我们基于SMA参与运动控制而感觉运动皮层(SMC)参与运动执行这一公认原则,使用路径模型测试了SMA对SMC影响的相应不对称性。我们观察到,右手运动时左侧SMA对左侧SMC的影响增加,左手运动时左侧SMA对右侧SMC的影响增加。然而,右侧SMA的影响在不同手的运动中没有显著变化。这种连接性的不对称意味着,在右利手人群中,左侧SMA在任何一只手的单侧运动中确实起着主导作用。该实验也为进一步研究健康人群或患者群体的运动系统连接性提供了基础。

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