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首页> 外文期刊>NeuroImage >Evaluation of the effective connectivity of supplementary motor areas during motor imagery using Granger causality mapping.
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Evaluation of the effective connectivity of supplementary motor areas during motor imagery using Granger causality mapping.

机译:使用格兰杰因果关系映射评估运动图像中辅助运动区域的有效连通性。

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摘要

Brain activation during motor imagery has been studied extensively for years, but only a few of these studies focused on investigating the effective connectivity in the brain. The existence of interactions or closed loop circuits between the SMA and other brain regions during motor imagery still remains unclear. In the present study, selecting the SMA as the region of interest, we used the Granger causality mapping (GCM) method to explore the effective connectivity in the brain during motor imagery. Our results demonstrated that more brain regions showed effective connections to the SMA during the right-hand motor imagery than during the left-hand motor imagery, but the strength of the casual influence during the left-hand motor imagery was stronger than that of the right-hand motor imagery. We further found forward and backward effective connectivity between the SMA and three regions, including the bilateral dorsal premotor area (PMd), the contralateral primary and secondary somatosensory cortex (S1), and the primary motor cortex (M1). these results might indicate how the brain regions were inter-activated during motor imagery.
机译:运动成像过程中的大脑激活已被广泛研究了多年,但是这些研究中只有少数集中在研究大脑中的有效连通性。运动成像期间SMA与其他大脑区域之间是否存在相互作用或闭环电路仍然不清楚。在本研究中,选择SMA作为感兴趣的区域,我们使用了格兰杰因果关系映射(GCM)方法来探索运动成像期间大脑中的有效连通性。我们的结果表明,与左手运动图像相比,右手运动图像中更多的大脑区域显示出与SMA的有效连接,但左手运动图像中的偶然影响强度要强于右手图像手运动图像。我们进一步发现SMA与三个区域之间的向前和向后有效连通性,包括双侧背侧前运动区(PMd),对侧初级和次级体感皮层(S1)以及初级运动皮层(M1)。这些结果可能表明在运动成像过程中大脑区域是如何相互激活的。

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