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June 16, 2022Frontiers in Human Neuroscience23 citationsOpen Access

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

SWShilong WangSLSheng‐Nan Lu

Key Result

Elite tai chi chuan athletes exhibited significantly lower functional connectivity between the left prefrontal lobe and right sensorimotor area during exercise compared to novices (r=0.266 vs r=0.438, p=0.0293).

Study Design

Type

Cross-Sectional (n=24)

Multicenter

No

Structured PICO

P
Population
24 healthy young adults aged 20-25 years, comprising 13 elite tai chi chuan athletes and 11 beginners, assessed for brain functional connectivity during resting and exercise states.
E
Exposure
Resting state and 24-style simplified tai chi chuan exercise state monitored by functional near-infrared spectroscopy (fNIRS).
C
Comparator
Novice group (inexperienced students with 0.5-1 years of training) compared to expert group (elite athletes with 10-15 years of training).
O
Outcome
Functional connectivity (FC) between the prefrontal lobe and the sensorimotor zone in resting and exercise states.surrogate

Elite tai chi chuan athletes exhibit reduced multi-circuit brain functional connectivity strength during exercise compared to novices, supporting the neural efficiency hypothesis.

Main Result

Absolute Event Rate: 0.266% vs 0.438%

p-value: p=0.0293

Limitations

  • Small sample size
  • Low spatial resolution of fNIRS
  • Cross-sectional design limits causal inference

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 ( P 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 ( P 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 ( P 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.

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Cite This Study

Wang et al. (2022) conducted a cross-sectional in Healthy (Tai Chi Chuan practitioners) (n=24). Elite tai chi chuan expertise vs. Novice tai chi chuan practitioners was evaluated on Functional connectivity (Pearson correlation coefficient r) between the left prefrontal lobe and right sensorimotor area during exercise (p=0.0293). Elite tai chi chuan athletes exhibited significantly lower functional connectivity between the left prefrontal lobe and right sensorimotor area during exercise compared to novices (r=0.266 vs r=0.438, p=0.0293).

synapsesocial.com/papers/6a2024e02065d284090e0633https://doi.org/10.3389/fnhum.2022.913108
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