Key Laboratory of Brain Functional Genomics (Ministry of Education and Shanghai), School of Psychology and Cognitive Science, East China Normal University, Shanghai, 200062, China.
Shanghai Key Laboratory of Magnetic Resonance, School of Physics and Electronic Science, East China Normal University, Shanghai, 200062, China.
Brain Struct Funct. 2021 Jul;226(6):1973-1990. doi: 10.1007/s00429-021-02304-w. Epub 2021 May 26.
Specialization and flexibility are two basic attributes of functional brain organization, enabling efficient cognition and behavior. However, it is largely unknown what plastic changes in specialization and flexibility in visual-motor areas occur in support of extraordinary motor skills in expert athletes and how the selective adaptability of the visual-motor system affects general perceptual or cognitive domains. Here, we used a dynamic network framework to investigate intrinsic functional specialization and flexibility of visual-motor system in expert table tennis players (TTP). Our results showed that sensorimotor areas increased intrinsic functional flexibility, whereas visual areas increased intrinsic functional specialization in expert TTP compared to nonathletes. Moreover, the flexibility of the left putamen was positively correlated with skill level, and that of the left lingual gyrus was positively correlated with behavioral accuracy of a sport-unrelated attention task. This study has uncovered dissociable plasticity of the visual-motor system and their predictions of individual differences in skill level and general attention processing. Furthermore, our time-resolved analytic approach is applicable across other professional athletes for understanding their brain plasticity and superior behavior.
专业化和灵活性是功能大脑组织的两个基本属性,使认知和行为高效。然而,在支持专家运动员非凡运动技能方面,视觉运动区域的专业化和灵活性的哪些塑性变化是未知的,以及视觉运动系统的选择性适应性如何影响一般感知或认知领域。在这里,我们使用动态网络框架研究了专家乒乓球运动员(TTP)视觉运动系统的内在功能专业化和灵活性。我们的结果表明,与非运动员相比,感觉运动区域在专家 TTP 中增加了内在功能灵活性,而视觉区域则增加了内在功能专业化。此外,左壳核的灵活性与技能水平呈正相关,左舌回的灵活性与与运动无关的注意力任务的行为准确性呈正相关。这项研究揭示了视觉运动系统的可分离可塑性及其对技能水平和一般注意力处理个体差异的预测。此外,我们的时分辨析方法适用于其他专业运动员,以了解他们的大脑可塑性和优越的行为。