Department of Mechanical Engineering, The University of Melbourne, Parkville, 3010, Australia.
Department of Engineering Science, University of Oxford, Oxford, OX1 2JD, UK.
Sci Data. 2024 Feb 15;11(1):208. doi: 10.1038/s41597-024-03030-8.
Measuring muscle fatigue involves assessing various components within the motor system. While subjective and sensor-based measures have been proposed, a comprehensive comparison of these assessment measures is currently lacking. This study aims to bridge this gap by utilizing three commonly used measures: participant self-reported perceived muscle fatigue scores, a sports physiotherapist's manual palpation-based muscle tightness scores, and surface electromyography sensors. Compensatory muscle fatigue occurs when one muscle group becomes fatigued, leading to the involvement and subsequent fatigue of other muscles as they compensate for the workload. The evaluation of compensatory muscle fatigue focuses on nine different upper body muscles selected by the sports physiotherapist. With a cohort of 30 male subjects, this study provides a valuable dataset for researchers and healthcare practitioners in sports science, rehabilitation, and human performance. It enables the exploration and comparison of diverse methods for evaluating different muscles in isometric contraction.
测量肌肉疲劳涉及评估运动系统内的各个组成部分。虽然已经提出了主观和基于传感器的测量方法,但目前缺乏对这些评估方法的全面比较。本研究旨在通过使用三种常用的方法来填补这一空白:参与者自我报告的肌肉疲劳感知评分、运动理疗师基于手动触诊的肌肉紧张度评分和表面肌电传感器。当一组肌肉疲劳时,就会发生代偿性肌肉疲劳,导致其他肌肉参与并随后疲劳,以代偿工作量。代偿性肌肉疲劳的评估重点是运动理疗师选择的九种不同的上半身肌肉。本研究使用 30 名男性受试者提供了一个有价值的数据集,供运动科学、康复和人体表现领域的研究人员和医疗保健从业者使用。它使人们能够探索和比较评估等长收缩中不同肌肉的不同方法。