首页> 外文期刊>The Journal of Physiology >Plasticity in human motor cortex is in part genetically determined.
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Plasticity in human motor cortex is in part genetically determined.

机译:人类运动皮层的可塑性部分是由基因决定的。

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Brain plasticity refers to changes in the organization of the brain as a result of different environmental stimuli. The aim of this study was to assess the genetic variation of brain plasticity, by comparing intrapair differences between monozygotic (MZ) and dizygotic (DZ) twins. Plasticity was examined by a paired associative stimulation (PAS) in 32 healthy female twins (9 MZ and 7 DZ pairs, aged 22.6+/-2.7 and 23.8+/-3.6 years, respectively). Stimulation consisted of low frequency repetitive application of single afferent electric stimuli, delivered to the right median nerve, paired with a single pulse transcranial magnetic stimulation (TMS) for activation of the abductor pollicis brevis muscle (APB). Corticospinal excitability was monitored for 30 min following the intervention. PAS induced an increase in the amplitudes of the motor evoked potentials (MEP) in the resting APB, compared to baseline. Intrapair differences, after baseline normalization, in the MEP amplitudes measured at 25-30 min post-intervention, were almost double for DZ (1.25) in comparison to MZ (0.64) twins (P =0.036). The heritability estimate for brain plasticity was found to be 0.68. This finding implicates that genetic factors may contribute significantly to interindividual variability in plasticity paradigms. Genetic factors may be important in adaptive brain reorganization involved in motor learning and rehabilitation from brain injury.
机译:脑可塑性是指由于不同的环境刺激而导致的脑组织变化。这项研究的目的是通过比较单卵(MZ)和双卵(DZ)双胞胎之间的配对对差异来评估大脑可塑性的遗传变异。通过配对关联刺激(PAS)检查了32名健康女性双胞胎(分别为9 MZ和7 DZ对,分别为22.6 +/- 2.7和23.8 +/- 3.6岁)中的可塑性。刺激包括低频重复施加单个传入的电刺激,传递到右正中神经,再与单脉冲经颅磁刺激(TMS)配对,以激活短poll外展肌短肌(APB)。干预后30分钟监测皮质脊髓兴奋性。与基线相比,PAS引起了静息APB中运动诱发电位(MEP)幅度的增加。基线归一化后,干预后25-30分钟测得的MEP振幅内的对内差异,与MZ(0.64)双胞胎相比,DZ(1.25)几乎翻了一番(P = 0.036)。发现大脑可塑性的遗传力估计为0.68。这一发现暗示遗传因素可能对可塑性范式中的个体间差异起重要作用。遗传因素在参与运动学习和脑损伤康复的适应性大脑重组中可能很重要。

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