首页> 美国卫生研究院文献>The Journal of Neuroscience >Recovery of Sensorimotor Function after Experimental Stroke Correlates with Restoration of Resting-State Interhemispheric Functional Connectivity
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Recovery of Sensorimotor Function after Experimental Stroke Correlates with Restoration of Resting-State Interhemispheric Functional Connectivity

机译:实验性卒中后感觉运动功能的恢复与静止状态半球功能连通性的恢复相关

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摘要

Despite the success of functional imaging to map changes in brain activation patterns after stroke, spatiotemporal dynamics of cerebral reorganization in correlation with behavioral recovery remain incompletely characterized. Here, we applied resting-state functional magnetic resonance imaging (rs-fMRI) together with behavioral testing to longitudinally assess functional connectivity within neuronal networks, in relation to changes in associated function after unilateral stroke in rats. Our specific goals were (1) to identify temporal alterations in functional connectivity within the bilateral cortical sensorimotor system and (2) to elucidate the relationship between those alterations and changes in sensorimotor function. Our study revealed considerable loss of functional connectivity between ipsilesional and contralesional primary sensorimotor cortex regions, alongside significant sensorimotor function deficits in the first days after stroke. The interhemispheric functional connectivity restored in the following weeks, but remained significantly reduced up to 10 weeks after stroke in animals with lesions that comprised subcortical and cortical tissue, whereas transcallosal neuroanatomical connections were preserved. Intrahemispheric functional connectivity between primary somatosensory and motor cortex areas was preserved in the lesion border zone and moderately enhanced contralesionally. The temporal pattern of changes in functional connectivity between bilateral primary motor and somatosensory cortices correlated significantly with the evolution of sensorimotor function scores. Our study (1) demonstrates that poststroke loss and recovery of sensorimotor function is associated with acute deterioration and subsequent retrieval of interhemispheric functional connectivity within the sensorimotor system and (2) underscores the potential of rs-fMRI to assess spatiotemporal characteristics of functional brain reorganization that may underlie behavioral recovery after brain injury.
机译:尽管功能成像成功地绘制了卒中后大脑激活模式的变化图,但与行为恢复相关的大脑重组的时空动态仍然不完整。在这里,我们应用静息状态功能磁共振成像(rs-fMRI)以及行为测试来纵向评估神经元网络内的功能连接性,以与大鼠单侧中风后相关功能的变化相关。我们的具体目标是(1)识别双侧皮质感觉运动系统内功能连接的暂时性变化,以及(2)阐明这些变化与感觉运动功能变化之间的关系。我们的研究显示,同侧和对侧主要感觉运动皮层区域之间的功能连接性显着下降,并且在卒中后的第一天出现明显的感觉运动功能缺陷。半球间功能连接在接下来的几周内恢复了,但是在中风后长达10周的动物中,其皮层和皮层下的病变仍显着减少,而跨call神经解剖连接得以保留。在病变边界区域保留了主要体感区和运动皮层区之间的半球内功能连接,并且在对侧病变中适度增强了功能。双边主要运动和体感皮质之间的功能连接性变化的时间模式与感觉运动功能评分的演变显着相关。我们的研究(1)证明中风后的丧失和感觉运动功能的恢复与感觉运动系统内的半球间功能连接性的急剧恶化和随后的恢复有关(2)强调了rs-fMRI评估功能性脑重组的时空特征的潜力可能是脑损伤后行为恢复的基础。

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