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一名顶级轮椅竞速残奥会运动员双侧中央前回手部运动区之间半球间相互作用的功能和结构特性

Functional and Structural Properties of Interhemispheric Interaction between Bilateral Precentral Hand Motor Regions in a Top Wheelchair Racing Paralympian.

作者信息

Morita Tomoyo, Takemura Hiromasa, Naito Eiichi

机构信息

Center for Information and Neural Networks (CiNet), Advanced ICT Research Institute, National Institute of Information and Communications Technology (NICT), 2A6 1-4 Yamadaoka, Suita 565-0871, Osaka, Japan.

Graduate School of Frontier Biosciences, Osaka University, 1-3 Yamadaoka, Suita 565-0871, Osaka, Japan.

出版信息

Brain Sci. 2023 Apr 25;13(5):715. doi: 10.3390/brainsci13050715.

Abstract

Long-term motor training can cause functional and structural changes in the human brain. Assessing how the training of specific movements affects specific parts of the neural circuitry is essential to understand better the underlying mechanisms of motor training-induced plasticity in the human brain. We report a single-case neuroimaging study that investigated functional and structural properties in a professional athlete of wheelchair racing. As wheelchair racing requires bilateral synchronization of upper limb movements, we hypothesized that functional and structural properties of interhemispheric interactions in the central motor system might differ between the professional athlete and controls. Functional and diffusion magnetic resonance imaging (fMRI and dMRI) data were obtained from a top Paralympian (P1) in wheelchair racing. With 23 years of wheelchair racing training starting at age eight, she holds an exceptional competitive record. Furthermore, fMRI and dMRI data were collected from three other paraplegic participants (P2-P4) with long-term wheelchair sports training other than wheelchair racing and 37 able-bodied control volunteers. Based on the fMRI data analyses, P1 showed activation in the bilateral precentral hand sections and greater functional connectivity between these sections during a right-hand unimanual task. In contrast, other paraplegic participants and controls showed activation in the contralateral hemisphere and deactivation in the ipsilateral hemisphere. Moreover, dMRI data analysis revealed that P1 exhibited significantly lower mean diffusivity along the transcallosal pathway connecting the bilateral precentral motor regions than control participants, which was not observed in the other paraplegic participants. These results suggest that long-term training with bilaterally synchronized upper-limb movements may promote bilateral recruitment of the precentral hand sections. Such recruitment may affect the structural circuitry involved in the interhemispheric interaction between the bilateral precentral regions. This study provides valuable evidence of the extreme adaptability of the human brain.

摘要

长期的运动训练会导致人类大脑发生功能和结构变化。评估特定运动的训练如何影响神经回路的特定部分,对于更好地理解运动训练引起的人类大脑可塑性的潜在机制至关重要。我们报告了一项单病例神经影像学研究,该研究调查了一名轮椅竞速职业运动员的功能和结构特性。由于轮椅竞速需要上肢运动的双侧同步,我们假设,职业运动员与对照组相比,中央运动系统中半球间相互作用的功能和结构特性可能存在差异。功能性和扩散磁共振成像(fMRI和dMRI)数据来自一名顶级残奥会轮椅竞速运动员(P1)。她从8岁开始进行了23年的轮椅竞速训练,拥有非凡的比赛成绩。此外,还收集了另外三名除轮椅竞速外长期从事轮椅运动训练的截瘫参与者(P2 - P4)以及37名健全对照志愿者的fMRI和dMRI数据。基于fMRI数据分析,P1在右手单手任务期间,双侧中央前回手部区域出现激活,且这些区域之间的功能连接更强。相比之下,其他截瘫参与者和对照组在对侧半球出现激活,同侧半球出现失活。此外,dMRI数据分析显示,与对照参与者相比,P1沿连接双侧中央前运动区的胼胝体通路的平均扩散率显著更低,其他截瘫参与者未观察到这种情况。这些结果表明,长期进行双侧同步上肢运动训练可能会促进中央前回手部区域的双侧募集。这种募集可能会影响双侧中央前区之间半球间相互作用所涉及的结构回路。这项研究为人类大脑的极端适应性提供了有价值的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/856c/10216139/2fbda1c0ab06/brainsci-13-00715-g001.jpg

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