1 Northwestern University, Chicago, IL, USA.
Neurorehabil Neural Repair. 2018 Jun;32(6-7):624-634. doi: 10.1177/1545968318781028. Epub 2018 Jun 11.
The loss of independent joint control, clinically referred to as limb synergies, is prevalent in the paretic upper limb of individuals with chronic hemiparetic stroke. To understand the underlying neural mechanisms, we previously reported that an increased overlap of cortical representations of shoulder/elbow could contribute to the abnormal poststroke synergies. However, these previous results were limited to a fixed time window just before the onset of motor tasks. Questions such as (1) how this overlap develops during motor preparation and (2) whether such development is also linked to upper limb synergies, remain unclear. To answer these questions, we investigated cortical overlap during motor preparation of isometric shoulder and elbow torque generation tasks in healthy individuals (n = 8), and individuals with moderate to severe chronic hemiparesis following a subcortical stroke (n = 12). We found a significant group difference in how the cortical overlap developed. In the healthy control and moderately impaired stroke groups, cortical overlap between shoulder and elbow motor tasks decreased during the motor preparation; however, this overlap increased in individuals with severe stroke. Furthermore, the rate of cortical overlap decrease/increase was linked to the upper limb Fugl-Meyer scores and limb synergies. These results demonstrate, for the first time, that the increase in overlap of the cortical activity during motor preparation is associated with the expression of synergies in the paretic upper limb of severely impaired poststroke individuals.
独立关节控制的丧失,临床上称为肢体协同作用,在慢性偏瘫中风患者的瘫痪上肢中很常见。为了了解潜在的神经机制,我们之前的报告表明,肩部/肘部皮质代表区的重叠增加可能导致异常的卒中后协同作用。然而,这些先前的结果仅限于运动任务开始前的固定时间窗口。诸如(1)这种重叠在运动准备过程中如何发展,以及(2)这种发展是否也与上肢协同作用有关,仍然不清楚。为了回答这些问题,我们研究了健康个体(n=8)和皮质下中风后中度至重度慢性偏瘫患者(n=12)在等长肩部和肘部扭矩产生任务的运动准备期间皮质重叠的情况。我们发现,皮质重叠的发展方式存在显著的组间差异。在健康对照组和中度受损的中风组中,肩部和肘部运动任务之间的皮质重叠在运动准备期间减少;然而,在严重中风的个体中,这种重叠增加了。此外,皮质重叠减少/增加的速度与上肢 Fugl-Meyer 评分和肢体协同作用有关。这些结果首次表明,运动准备期间皮质活动的重叠增加与严重受损的中风后个体瘫痪上肢协同作用的表达有关。