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精神疲劳对体力疲劳发展的影响:一种神经工效学方法。

Effects of mental fatigue on the development of physical fatigue: a neuroergonomic approach.

出版信息

Hum Factors. 2014 Jun;56(4):645-56. doi: 10.1177/0018720813507279.

Abstract

OBJECTIVE

The present study used a neuroergonomic approach to examine the interaction of mental and physical fatigue by assessing prefrontal cortex activation during submaximal fatiguing handgrip exercises.

BACKGROUND

Mental fatigue is known to influence muscle function and motor performance, but its contribution to the development of voluntary physical fatigue is not well understood.

METHOD

A total of 12 participants performed separate physical (control) and physical and mental fatigue (concurrent) conditions at 30% of their maximal handgrip strength until exhaustion. Functional near infrared spectroscopy was employed to measure prefrontal cortex activation, whereas electromyography and joint steadiness were used simultaneously to quantify muscular effort.

RESULTS

Compared to the control condition, blood oxygenation in the bilateral prefrontal cortex was significantly lower during submaximal fatiguing contractions associated with mental fatigue at exhaustion, despite comparable muscular responses.

CONCLUSION

The findings suggest that interference in the prefrontal cortex may influence motor output during tasks that require both physical and cognitive processing.

APPLICATION

A neuroergonomic approach involving simultaneous monitoring of brain and body functions can provide critical information on fatigue development that may be overlooked during traditional fatigue assessments.

摘要

目的

本研究采用神经工效学方法,通过评估在进行次最大疲劳握力运动期间前额叶皮层的激活情况,来研究精神和身体疲劳的相互作用。

背景

已知精神疲劳会影响肌肉功能和运动表现,但它对自愿性体力疲劳发展的影响尚不清楚。

方法

共有 12 名参与者在最大握力的 30%下分别进行物理(对照)和身体与精神疲劳(并发)条件的实验,直到疲劳为止。使用功能近红外光谱测量前额叶皮层的激活情况,同时使用肌电图和关节稳定性来定量肌肉用力。

结果

与对照条件相比,在与精神疲劳相关的次最大疲劳收缩期间,尽管肌肉反应相当,但双侧前额叶皮层的血氧水平明显降低。

结论

这些发现表明,前额叶皮层的干扰可能会影响需要身体和认知加工的任务中的运动输出。

应用

涉及大脑和身体功能同步监测的神经工效学方法可以提供在传统疲劳评估中可能被忽视的关于疲劳发展的关键信息。

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