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认知疲劳对老年女性神经肌肉疲劳相关前额叶皮层的影响。

The effect of cognitive fatigue on prefrontal cortex correlates of neuromuscular fatigue in older women.

作者信息

Shortz Ashley E, Pickens Adam, Zheng Qi, Mehta Ranjana K

机构信息

Department of Environmental and Occupational Health, School of Public Health, Texas A&M University, College Station, TX, 77843, USA.

Department of Epidemiology and Biostatistics, School of Public Health, Texas A&M University, College Station, TX, 77843, USA.

出版信息

J Neuroeng Rehabil. 2015 Dec 21;12:115. doi: 10.1186/s12984-015-0108-3.

Abstract

BACKGROUND

As the population of adults aged 65 and above is rapidly growing, it is crucial to identify physical and cognitive limitations pertaining to daily living. Cognitive fatigue has shown to adversely impact neuromuscular function in younger adults, however its impact on neuromuscular fatigue, and associated brain function changes, in older adults is not well understood. The aim of the study was to examine the impact of cognitive fatigue on neuromuscular fatigue and associated prefrontal cortex (PFC) activation patterns in older women.

METHODS

Eleven older (75.82 (7.4) years) females attended two sessions and performed intermittent handgrip exercises at 30 % maximum voluntary contraction (MVC) until voluntary exhaustion after a 60-min control (watching documentary) and 60-min cognitive fatigue (performing Stroop Color Word and 1-Back tests) condition. Dependent measures included endurance time, strength loss, PFC activity (measured using fNIRS), force fluctuations, muscle activity, cardiovascular responses, and perceived discomfort.

RESULTS

Participants perceived greater cognitive fatigue after the 60-min cognitive fatigue condition when compared to the control condition. While neuromuscular fatigue outcomes (i.e., endurance time, strength loss, perceived discomfort), force fluctuations, and muscle activity were similar across both the control and cognitive fatigue conditions, greater decrements in PFC activity during neuromuscular fatigue development after the cognitive fatigue condition were observed when compared to the control condition.

CONCLUSION

Despite similar neuromuscular outcomes, cognitive fatigue was associated with blunted PFC activation during the handgrip fatiguing exercise that may be indicative of neural adaptation with aging in an effort to maintain motor performance. Examining the relationship between cognitive fatigue and neuromuscular output by imaging other motor-related brain regions are needed to provide a better understanding of age-related compensatory adaptations to perform daily tasks that involve some levels of cognitive demand and physical exercise, especially when older adults experience them sequentially.

摘要

背景

随着65岁及以上成年人的数量迅速增长,识别与日常生活相关的身体和认知限制至关重要。认知疲劳已被证明会对年轻人的神经肌肉功能产生不利影响,然而其对老年人神经肌肉疲劳及相关脑功能变化的影响尚不清楚。本研究的目的是探讨认知疲劳对老年女性神经肌肉疲劳及相关前额叶皮质(PFC)激活模式的影响。

方法

11名老年(75.82(7.4)岁)女性参加了两个阶段的实验,在60分钟的对照(观看纪录片)和60分钟的认知疲劳(进行斯特鲁普颜色词测试和1-回溯测试)条件下,以最大自主收缩(MVC)的30%进行间歇性握力练习,直至自愿疲劳。相关测量指标包括耐力时间、力量损失、PFC活动(使用功能近红外光谱技术测量)、力量波动、肌肉活动、心血管反应和感知不适。

结果

与对照条件相比,参与者在60分钟的认知疲劳条件后感觉认知疲劳更严重。虽然在对照和认知疲劳条件下,神经肌肉疲劳结果(即耐力时间、力量损失、感知不适)、力量波动和肌肉活动相似,但与对照条件相比,在认知疲劳条件后神经肌肉疲劳发展过程中,观察到PFC活动有更大程度的下降。

结论

尽管神经肌肉结果相似,但在握力疲劳运动期间,认知疲劳与PFC激活减弱有关,这可能表明随着年龄增长神经发生了适应性变化,以维持运动表现。需要通过对其他与运动相关的脑区进行成像来研究认知疲劳与神经肌肉输出之间的关系,以便更好地理解与年龄相关的代偿性适应,从而完成涉及一定认知需求和体育锻炼水平的日常任务,尤其是当老年人依次经历这些任务时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ccb/4687384/a1eb4d5d1cf3/12984_2015_108_Fig1_HTML.jpg

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