Fatigue task-dependent effect on spatial distribution of lumbar muscles activity

IF 2 4区 医学 Q3 NEUROSCIENCES
Emile Marineau-Bélanger , Martin Vaurs , Justin Roy , Julie O'Shaughnessy , Martin Descarreaux , Jacques Abboud
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引用次数: 0

Abstract

This study aims to identify how spatial distribution of lumbar muscle activity is modulated by different fatigue tasks. Twenty healthy adults performed two different isometric trunk extension endurance tasks (the modified Sorensen test and the inverted modified Sorensen test) until exhaustion. During these tasks, bilateral superficial lumbar muscle activity was recorded using high-density electromyography. The spatial distribution of activation within these muscles was obtained using the centroid coordinates in the medio-lateral and cranio-caudal directions. The effects of task and endurance time (left and right sides) were investigated using repeated measures ANOVA. Results revealed a significant lateral shift of the centroid throughout the fatigue tasks on both sides and no difference between tasks. Significant task × time interaction effects were found for the cranio-caudal direction on both sides showing a significantly more caudal location of the centroid in the modified Sorensen test compared to the inverted test at the beginning of the tasks. Our findings suggest that spatial distribution of lumbar muscle activity is task-dependent in a pre-fatigue stage while an alternative but similar muscle recruitment strategy is used in both tasks to maintain performance in the later stages of muscle fatigue.

疲劳任务依赖性对腰肌活动空间分布的影响。
本研究旨在确定不同的疲劳任务如何调节腰肌活动的空间分布。20名健康成人进行两种不同的躯干伸展耐力任务(改良Sorensen试验和倒置改良Sorensen试验),直到筋疲力尽。在这些任务中,用高密度肌电图记录双侧浅表腰肌活动。利用中外侧和颅尾方向的质心坐标获得了这些肌肉内激活的空间分布。使用重复测量方差分析(repeated measures ANOVA)研究任务时间和耐力时间(左右两侧)的影响。结果显示,在整个疲劳任务中,两侧的质心有显著的横向移动,任务之间没有差异。在双侧颅尾方向上发现了显著的任务×时间交互效应,在任务开始时,改进Sorensen测试的质心在尾侧的位置明显高于反向测试。我们的研究结果表明,在疲劳前阶段,腰肌活动的空间分布是任务依赖的,而在肌肉疲劳的后期阶段,两种任务都使用了另一种相似的肌肉招募策略来维持表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.70
自引率
8.00%
发文量
70
审稿时长
74 days
期刊介绍: Journal of Electromyography & Kinesiology is the primary source for outstanding original articles on the study of human movement from muscle contraction via its motor units and sensory system to integrated motion through mechanical and electrical detection techniques. As the official publication of the International Society of Electrophysiology and Kinesiology, the journal is dedicated to publishing the best work in all areas of electromyography and kinesiology, including: control of movement, muscle fatigue, muscle and nerve properties, joint biomechanics and electrical stimulation. Applications in rehabilitation, sports & exercise, motion analysis, ergonomics, alternative & complimentary medicine, measures of human performance and technical articles on electromyographic signal processing are welcome.
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