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优秀太极拳运动员静息状态和运动状态下的脑功能连接:一项近红外光谱研究。

Brain Functional Connectivity in the Resting State and the Exercise State in Elite Tai Chi Chuan Athletes: An fNIRS Study.

作者信息

Wang Shilong, Lu Shengnan

机构信息

Wushu School of China, Beijing Sports University, Beijing, China.

College of Dance and Martial Arts, Capital University of Physical Education and Sport, Beijing, China.

出版信息

Front Hum Neurosci. 2022 Jun 16;16:913108. doi: 10.3389/fnhum.2022.913108. eCollection 2022.

Abstract

This study aimed to reveal the characteristics of multi-circuit brain synergy between elite tai chi chuan athletes in resting and exercise states and to provide neuroimaging evidence of improvements in brain function by motor skill training. Functional near-infrared spectroscopy (fNIRS) was used to compare the brain activity of professional tai chi chuan athletes (expert group) and beginners (novice group) in resting and exercise states, and to assess functional connectivity (FC) between the prefrontal lobe and the sensorimotor zone. In the resting state, the FC between the left prefrontal lobe and the right sensorimotor area in the expert group was significantly lower than that in the novice group ( < 0.05). In the exercise state, the patterns of FC between the left prefrontal lobe and right sensorimotor area, the right prefrontal lobe and left sensorimotor area, and the left and right sensorimotor areas in the expert group were significantly lower than that in the novice group ( < 0.05). From the resting state to the locomotor state, the expert group experienced a greater absolute value of functional connection increment between the left prefrontal cortex and right sensorimotor area, and between the left sensorimotor area and right sensorimotor area ( < 0.05). This was positively correlated with the self-evaluation results of motor performance behavior. Under sports conditions, professional athletes' multi-circuit brain FC strength is significantly reduced, and their elite motor skill performance supports the neural efficiency hypothesis. This may be related to the high adaptation of the brain to specific tasks and the improvement of the integration of somatic perception processing and motor function.

摘要

本研究旨在揭示优秀太极拳运动员在静息和运动状态下多回路脑协同的特征,并为运动技能训练改善脑功能提供神经影像学证据。采用功能近红外光谱技术(fNIRS)比较专业太极拳运动员(专家组)和初学者(新手组)在静息和运动状态下的脑活动,并评估前额叶与感觉运动区之间的功能连接(FC)。在静息状态下,专家组左侧前额叶与右侧感觉运动区之间的FC显著低于新手组(<0.05)。在运动状态下,专家组左侧前额叶与右侧感觉运动区、右侧前额叶与左侧感觉运动区以及左右感觉运动区之间的FC模式均显著低于新手组(<0.05)。从静息状态到运动状态,专家组左侧前额叶皮质与右侧感觉运动区以及左侧感觉运动区与右侧感觉运动区之间的功能连接增量绝对值更大(<0.05)。这与运动表现行为的自我评价结果呈正相关。在运动条件下,专业运动员的多回路脑FC强度显著降低,其优秀的运动技能表现支持神经效率假说。这可能与大脑对特定任务的高度适应性以及体感加工与运动功能整合的改善有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/677b/9243259/f22a3cfc31db/fnhum-16-913108-g0001.jpg

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