运动员大脑的特征:来自神经生理学和神经影像学的证据

Hiroki Nakata , Michiko Yoshie , Akito Miura , Kazutoshi Kudo
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引用次数: 210

摘要

我们回顾了基于非侵入性神经生理学和神经影像学方法获得的数据对运动员大脑的研究;这些数据涉及视觉、听觉和体感(触觉)刺激的认知处理,以及包括准备、执行和想象在内的运动处理。人们普遍认为,运动员比非运动员更快、更强壮、跳得更高、更准确、更高效、更稳定、更自动。这些说法已经被运动员大脑神经元回路中可塑性适应性变化机制的神经科学证据所证实。强化的神经网络和可塑性变化是由在大量的日常体育训练中获得和执行复合运动技能引起的,这些训练需要快速识别刺激、做出决策和特别注意。此外,运动中神经元调节的方式也可能不同。本文还讨论了今后研究中应注意的几个问题。
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Characteristics of the athletes' brain: Evidence from neurophysiology and neuroimaging

We review research on athletes' brains based on data obtained using non-invasive neurophysiological and neuroimaging methods; these data pertain to cognitive processing of visual, auditory, and somatosensory (tactile) stimulation as well as to motor processing, including preparation, execution, and imagery. It has been generally accepted that athletes are faster, stronger, able to jump higher, more accurate, more efficient, more consistent, and more automatic in their sports performances than non-athletes. These claims have been substantiated by neuroscientific evidence of the mechanisms underlying the plastic adaptive changes in the neuronal circuits of the brains of athletes. Reinforced neural networks and plastic changes are induced by the acquisition and execution of compound motor skills during extensive daily physical training that requires quick stimulus discrimination, decision making, and specific attention. In addition, it is likely that the manner of neuronal modulation differs among sports. We also discuss several problems that should be addressed in future studies.

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Brain Research Reviews
Brain Research Reviews 医学-神经科学
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