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首页> 外文期刊>Journal of neurotrauma >Traumatic Brain Injury Occludes Training-Dependent Cortical Reorganization in the Contralesional Hemisphere
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Traumatic Brain Injury Occludes Training-Dependent Cortical Reorganization in the Contralesional Hemisphere

机译:创伤性脑损伤遮挡训练依赖性皮质重组在违背半球中

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Rehabilitative training drives plasticity in the ipsilesional (injured) motor cortex that is believed to support recovery of motor function after either stroke or traumatic brain injury (TBI). In addition, adaptive plasticity in the contralesional (uninjured) motor cortex has been well-characterized in the context of stroke. While similar rehabilitation-dependent plasticity in the intact hemisphere may occur after TBI, this has yet to be thoroughly explored. In this study, we investigated the effects of TBI and forelimb training on reorganization of movement representations in the intact motor cortex. Rats were trained to proficiency on the isometric pull task and then received a controlled cortical impact (CCI) in the left motor cortex to impair function of the trained right forelimb. After TBI, animals underwent forelimb training on the pull task for 2 months. At the end of training, intracortical microstimulation was used to document the organization of the intact motor cortex (the contralesional hemisphere). TBI significantly decreased the cortical area eliciting movements of the impaired forelimb in untrained animals. In the absence of TBI, training significantly increased forelimb map area, compared with in untrained controls. However, training of the impaired forelimb after TBI was insufficient to increase forelimb map area. These findings are consistent with other studies showing impaired rehabilitation-dependent plasticity after TBI and provide a novel characterization of TBI on rehabilitation-dependent plasticity in contralesional motor circuits.
机译:康复训练驱动IPSINESION(受伤)电机皮层中的可塑性,据信在中风或创伤性脑损伤(TBI)之后支持回收电机功能。此外,在行程的背景下,对不动(未采集)电机皮质中的适应性可塑性已经很好地表征。虽然在TBI之后可能发生完整的半球中类似的康复依赖可塑性,但这尚未彻底探索。在这项研究中,我们调查了TBI和前肢培训对完整电动机皮层中运动表示重组的影响。大鼠培训以熟练熟练等距拉任务,然后在左电机皮层中接受受控皮质冲击(CCI),以损害训练有素的右前肢的功能。 TBI之后,动物接受了前肢训练了2个月。在训练结束时,使用内部微刺激来记录完整的电动机皮层(控告半球)的组织。 TBI显着降低了未经训练的动物受损的前肢的皮质区域。在没有TBI的情况下,与未经训练的控制相比,培训显着增加了前列造影区域。然而,TBI后,TBI后,对前肢受损的培训不足以增加强子地图区域。这些发现与其他研究表明,在TBI之后表现出恢复依赖性可塑性的其他研究,并提供了对正确电动机电路中的康复依赖性可塑性的新颖性表征。

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