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运动训练与间歇性 theta 爆发刺激在调节运动皮质可塑性中的相互作用:BDNF Val66Met 多态性的影响。

Interaction of motor training and intermittent theta burst stimulation in modulating motor cortical plasticity: influence of BDNF Val66Met polymorphism.

机构信息

Department of Neurology, Ewha Womans University School of Medicine, Seoul, Korea.

出版信息

PLoS One. 2013;8(2):e57690. doi: 10.1371/journal.pone.0057690. Epub 2013 Feb 25.

Abstract

Cortical physiology in human motor cortex is influenced by behavioral motor training (MT) as well as repetitive transcranial magnetic stimulation protocol such as intermittent theta burst stimulation (iTBS). This study aimed to test whether MT and iTBS can interact with each other to produce additive changes in motor cortical physiology. We hypothesized that potential interaction between MT and iTBS would be dependent on BDNF Val66Met polymorphism, which is known to affect neuroplasticity in the human motor cortex. Eighty two healthy volunteers were genotyped for BDNF polymorphism. Thirty subjects were assigned for MT alone, 23 for iTBS alone, and 29 for MT + iTBS paradigms. TMS indices for cortical excitability and motor map areas were measured prior to and after each paradigm. MT alone significantly increased the motor cortical excitability and expanded the motor map areas. The iTBS alone paradigm also enhanced excitability and increased the motor map areas to a slightly greater extent than MT alone. A combination of MT and iTBS resulted in the largest increases in the cortical excitability, and the representational motor map expansion of MT + iTBS was significantly greater than MT or iTBS alone only in Val/Val genotype. As a result, the additive interaction between MT and iTBS was highly dependent on BDNF Val66Met polymorphism. Our results may have clinical relevance in designing rehabilitative strategies that combine therapeutic cortical stimulation and physical exercise for patients with motor disabilities.

摘要

人类运动皮层的皮质生理学受到行为运动训练(MT)以及重复经颅磁刺激方案(如间歇性 theta 爆发刺激(iTBS))的影响。本研究旨在测试 MT 和 iTBS 是否可以相互作用,从而在运动皮质生理学上产生相加变化。我们假设 MT 和 iTBS 之间的潜在相互作用将取决于 BDNF Val66Met 多态性,已知该多态性会影响人类运动皮层的神经可塑性。82 名健康志愿者接受了 BDNF 多态性的基因分型。30 名受试者被分配接受单独的 MT,23 名受试者接受单独的 iTBS,29 名受试者接受 MT+iTBS 方案。在每个方案之前和之后测量 TMS 指数以评估皮质兴奋性和运动图区域。单独的 MT 显著增加了皮质兴奋性并扩大了运动图区域。单独的 iTBS 方案也增强了兴奋性,并在稍大程度上增加了运动图区域,超过了单独的 MT。MT 和 iTBS 的组合导致皮质兴奋性的最大增加,并且只有在 Val/Val 基因型中,MT+iTBS 的代表性运动图扩展明显大于 MT 或 iTBS 单独。因此,MT 和 iTBS 之间的附加相互作用高度依赖于 BDNF Val66Met 多态性。我们的结果可能在设计将治疗性皮质刺激与运动残疾患者的体育锻炼相结合的康复策略方面具有临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8ec/3581515/f7d523fea2a3/pone.0057690.g001.jpg

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