连续多日重复接触高空钻孔职业任务导致的肌肉骨骼疲劳反应的变异性

IF 1.6 3区 心理学 Q4 NEUROSCIENCES Human Movement Science Pub Date : 2024-08-29 DOI:10.1016/j.humov.2024.103276
Matthew S. Russell, Sam S. Vasilounis, Emily Lefebvre, Janessa D.M. Drake, Jaclyn N. Chopp-Hurley
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引用次数: 0

摘要

新近的研究表明,对高空作业的肌肉和运动学反应显示出与疲劳相关的肌肉和运动学变化的高度可变性,在不同天进行评估时,个体之间和个体内部都是如此。本研究考察了在自愿疲劳前进行的高空钻孔任务的肌电图(EMG)、运动学和运动反应是否与一周后重复相同任务的肌电图、运动学和运动反应具有可比性。对 15 名男性和 14 名女性参与者的 7 块肩部肌肉取样的表面肌电图和肌肉内肌电图以及右上肢运动学和动力学进行了分析。虽然前锯肌在第 2 天的肌电图均方根(RMS)信号振幅与疲劳相关的增加明显较少,但没有观察到肌电图平均功率频率(MPF)逐日发生明显变化。与第1天的非疲劳状态相比,第2天的非疲劳上肢运动学特征是胸肱骨抬高、肘关节屈曲增加,腕关节尺偏减少。第 1 天出现的肩关节屈曲力矩与疲劳有关的变化在第 2 天有所减少,这表明人们学会了一种更有效的高空作业策略,并在连续几天中保持了这种策略。以绝对偏差中位数(MdAD)量化的上肢关节角度变异性的逐日变化与关节有关。尽管两天都产生了不同的疲劳相关运动策略,但在完成高空钻孔任务的第二天,运动学和运动疲劳相关的变化表明存在潜在的运动学学习效应。
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Variability in musculoskeletal fatigue responses associated with repeated exposure to an occupational overhead drilling task completed on successive days

Emerging research suggests that muscular and kinematic responses to overhead work display a high degree of variability in fatigue-related muscular and kinematics changes, both between and within individuals when evaluated across separate days. This study examined whether electromyographic (EMG), kinematic, and kinetic responses to an overhead drilling task performed until volitional fatigue were comparable to those of a repeated identical exposure of the task completed 1 week later. Surface EMG and intramuscular EMG, sampled from 7 shoulder muscles, and right upper limb kinematics and kinetics were analyzed from 15 male and 14 female participants. No significant day-to-day changes in EMG mean power frequency (MPF) were observed, though serratus anterior displayed significantly less fatigue-related increase in EMG root-mean-squared (RMS) signal amplitude on day 2. Unfatigued upper kinematics on day 2 featured an increase in thoracohumeral elevation, elbow flexion, and decrease in wrist ulnar deviation compared to unfatigued state on day 1. Fatigue-related changes in shoulder joint flexion moment that were present on day 1 were reduced on day 2, suggesting that a more efficient overhead work strategy was learned and preserved across successive days. Day-to-day changes in upper limb joint angle variability, quantified by median absolute deviation (MdAD), were joint dependent. Despite yielding a variable fatigue-related kinetic strategy on both days, kinematic and kinetic fatigue-related changes on a second day of completing an overhead drilling task suggested a potential kinematic learning effect.

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来源期刊
Human Movement Science
Human Movement Science 医学-神经科学
CiteScore
3.80
自引率
4.80%
发文量
89
审稿时长
42 days
期刊介绍: Human Movement Science provides a medium for publishing disciplinary and multidisciplinary studies on human movement. It brings together psychological, biomechanical and neurophysiological research on the control, organization and learning of human movement, including the perceptual support of movement. The overarching goal of the journal is to publish articles that help advance theoretical understanding of the control and organization of human movement, as well as changes therein as a function of development, learning and rehabilitation. The nature of the research reported may vary from fundamental theoretical or empirical studies to more applied studies in the fields of, for example, sport, dance and rehabilitation with the proviso that all studies have a distinct theoretical bearing. Also, reviews and meta-studies advancing the understanding of human movement are welcome. These aims and scope imply that purely descriptive studies are not acceptable, while methodological articles are only acceptable if the methodology in question opens up new vistas in understanding the control and organization of human movement. The same holds for articles on exercise physiology, which in general are not supported, unless they speak to the control and organization of human movement. In general, it is required that the theoretical message of articles published in Human Movement Science is, to a certain extent, innovative and not dismissible as just "more of the same."
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