首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Task-specific brain reorganization in motor recovery induced by a hybrid-rehabilitation combining training with brain stimulation after stroke
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Task-specific brain reorganization in motor recovery induced by a hybrid-rehabilitation combining training with brain stimulation after stroke

机译:脑卒中后混合训练与混合康复相结合诱导的运动恢复中的特定任务脑重组

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Recently, we have developed a new hybrid-rehabilitation combining 5 Hz repetitive transcranial magnetic stimulation and extensor motor training of the paretic upper-limb for stroke patients with flexor hypertonia. We previously showed that the extensor-specific plastic change in M1 was associated with beneficial effects of our protocol (Koganemaru et al., 2010). Here, we investigated whether extensor-specific multiregional brain reorganization occurred after the hybrid-rehabilitation using functional magnetic resonance imaging. Eleven chronic stroke patients were scanned while performing upper-limb extensor movements. Untrained flexor movements were used as a control condition. The scanning and clinical assessments were done before, immediately and 2 weeks after the hybrid-rehabilitation. As a result, during the trained extensor movements, the imaging analysis showed a significant reduction of brain activity in the ipsilesional sensorimotor cortex, the contralesional cingulate motor cortex and the contralesional premotor cortex in association with functional improvements of the paretic hands. The activation change was not found for the control condition. Our results suggested that use-dependent plasticity induced by repetitive motor training with brain stimulation might be related to task-specific multi-regional brain reorganization. It provides a key to understand why repetitive training of the target action is one of the most powerful rehabilitation strategies to help patients. (C) 2014 Elsevier Ireland Ltd and the Japan Neuroscience Society. All rights reserved.
机译:最近,我们开发了一种新的混合康复疗法,结合5 Hz重复经颅磁刺激和伸肌运动训练来治疗屈肌张力亢进的中风患者的上肢四肢。我们之前曾证明,M1中特定于伸肌的塑性变化与我们方案的有益作用相关(Koganemaru等人,2010)。在这里,我们调查使用功能磁共振成像的混合康复后伸肌特定的多区域大脑重组是否发生。在进行上肢伸肌运动时,对11名慢性中风患者进行了扫描。未经训练的屈肌运动被用作对照条件。在混合修复之前,之后和之后2周进行扫描和临床评估。结果,在经过训练的伸肌运动过程中,影像分析显示同侧感觉运动皮层,对侧扣带回运动皮层和对侧运动前皮层的大脑活动与显着手的功能改善相关,大脑活动显着减少。找不到对照条件的激活变化。我们的研究结果表明,重复运动训练和脑刺激引起的使用依赖性可塑性可能与特定任务的多区域大脑重组有关。它提供了一个关键,以了解为什么对目标动作进行重复训练是帮助患者的最强大的康复策略之一。 (C)2014爱思唯尔爱尔兰有限公司和日本神经科学协会。版权所有。

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