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首页> 外文期刊>Medicine. >Effects of an Exhaustive Exercise on Motor Skill Learning and on the Excitability of Primary Motor Cortex and Supplementary Motor Area
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Effects of an Exhaustive Exercise on Motor Skill Learning and on the Excitability of Primary Motor Cortex and Supplementary Motor Area

机译:力竭运动对运动技能学习以及对初级运动皮层和辅助运动区兴奋性的影响

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摘要

We examined, on 28 healthy adult subjects, the possible correlations of an exhaustive exercise, and the consequent high blood lactate levels, on immediate (explicit) and delayed (implicit) motor execution of sequential finger movements (cognitive task). Moreover, we determined with transcranial magnetic stimulation whether changes in motor performance are associated with variations in excitability of primary motor area (M1) and supplementary motor area (SMA). We observed that, after an acute exhaustive exercise, the large increase of blood lactate is associated with a significant worsening of both explicit and implicit sequential visuomotor task paradigms, without gender differences. We also found that, at the end of the exhaustive exercise, there is a change of excitability in both M1 and SMA. In particular, the excitability of M1 was increased whereas that of SMA decreased and, also in this case, without gender differences. These results support the idea that an increase of blood lactate after an exhaustive exercise appears to have a protective effect at level of primary cortical areas (as M1), although at the expense of efficiency of adjacent cortical regions (as SMA).
机译:我们检查了28名健康成人受试者在进行连续手指运动(认知任务)的即时(显性)和延迟(内隐)运动执行时,力竭运动的可能关联性以及随之而来的血乳酸水平升高。此外,我们通过经颅磁刺激确定运动性能的变化是否与主运动区(M1)和辅助运动区(SMA)的兴奋性变化有关。我们观察到,在剧烈的力竭运动之后,血液乳酸的大量增加与显性和隐性顺序性运动任务范例的显着恶化相关,而没有性别差异。我们还发现,在力竭运动结束时,M1和SMA的兴奋性都发生了变化。特别是,M1的兴奋性增加而SMA的兴奋性下降,在这种情况下,也没有性别差异。这些结果支持这样的观点:力竭运动后血液乳酸的增加似乎对初级皮质区域(如M1)具有保护作用,尽管是以牺牲相邻皮质区域(如SMA)的效率为代价的。

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