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Altered resting-state effective connectivity of fronto-parietal motor control systems on the primary motor network following stroke

机译:卒中后主电机网络上额顶电机控制系统的静止状态有效连通性改变

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Previous brain imaging work suggests that stroke alters the effective connectivity (the influence neural regions exert upon each other) of motor execution networks. The present study examines the intrinsic effective connectivity of top-down motor control in stroke survivors (n = 13) relative to healthy participants (n = 12). Stroke survivors exhibited significant deficits in motor function, as assessed by the Fugl-Meyer Motor Assessment. We used structural equation modeling (SEM) of resting-state fMRI data to investigate the relationship between motor deficits and the intrinsic effective connectivity between brain regions involved in motor control and motor execution. An exploratory adaptation of SEM determined the optimal model of motor execution effective connectivity in healthy participants, and confirmatory SEM assessed stroke survivors' fit to that model. We observed alterations in spontaneous resting-state effective connectivity from fronto-parietal guidance systems to the motor network in stroke survivors. More specifically, diminished connectivity was found in connections from the superior parietal cortex to primary motor cortex and supplementary motor cortex. Furthermore, the paths demonstrated large individual variance in stroke survivors but less variance in healthy participants. These findings suggest that characterizing the deficits in resting-state connectivity of top-down processes in stroke survivors may help optimize cognitive and physical rehabilitation therapies by individually targeting specific neural pathway.
机译:先前的脑成像工作表明,中风会改变运动执行网络的有效连通性(神经区域相互影响)。本研究研究了卒中幸存者(n = 13)相对于健康参与者(n = 12)自上而下运动控制的内在有效连通性。根据Fugl-Meyer运动评估,中风幸存者表现出明显的运动功能缺陷。我们使用静止状态功能磁共振成像数据的结构方程模型(SEM)来研究运动缺陷与参与运动控制和运动执行的大脑区域之间的固有有效连接之间的关系。 SEM的探索性适应确定了健康参与者运动执行有效连接性的最佳模型,并通过SEM评估了卒中幸存者对该模型的适应性。我们观察到中风幸存者从额顶引导系统到运动网络的自发静止状态有效连通性发生了变化。更具体地说,在上顶叶皮层至初级运动皮层和辅助运动皮层的连接中发现连通性降低。此外,这些路径显示出中风幸存者的个体差异较大,而健康参与者的差异较小。这些发现表明,表征中风幸存者自上而下过程的静止状态连接性缺陷可能有助于通过单独靶向特定神经通路来优化认知和物理康复疗法。

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