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基于肌肉骨骼建模的、面向人体工程学家的全身负荷评估工具 (MATE):方法开发和概念验证案例研究。

Musculoskeletal-Modeling-Based, Full-Body Load-Assessment Tool for Ergonomists (MATE): Method Development and Proof of Concept Case Studies.

机构信息

Human Movement Biomechanics Research Group, Department of Movement Sciences, Katholieke Universiteit Leuven, 3001 Heverlee, Belgium.

出版信息

Int J Environ Res Public Health. 2023 Jan 13;20(2):1507. doi: 10.3390/ijerph20021507.

Abstract

A new ergonomic-risk-assessment tool was developed that combines musculoskeletal-model-based loading estimates with insights from fatigue failure theory to evaluate full-body musculoskeletal loading during dynamic tasks. Musculoskeletal-modeling output parameters, i.e., joint contact forces and muscle forces, were combined with tissue-specific injury thresholds that account for loading frequency to determine the injury risk for muscles, lower back, and hip cartilage. The potential of this new risk-assessment tool is demonstrated for defining ergonomic interventions in terms of lifting characteristics, back and shoulder exoskeleton assistance, box transferring, stoop lifting, and an overhead wiring task, respectively. The MATE identifies the risk of WMSDs in different anatomical regions during occupational tasks and allows for the evaluation of the impact of interventions that modify specific lifting characteristics, i.e., load weight versus task repetition. Furthermore, and in clear contrast to currently available ergonomic assessment scores, the effects of the exoskeleton assistance level on the risk of WMSDs of full-body musculoskeletal loading (in particular, the muscles, lower back, and hips) can be evaluated and shows small reductions in musculoskeletal loading but not in injury risk. Therefore, the MATE is a risk-assessment tool based on a full-body, musculoskeletal-modeling approach combined with insights from the fatigue failure theory that shows the proof of concept of a shoulder and back exoskeleton. Furthermore, it accounts for subject-specific characteristics (age and BMI), further enhancing individualized ergonomic-risk assessment.

摘要

开发了一种新的人体工程学风险评估工具,该工具将基于肌肉骨骼模型的负荷估算与疲劳失效理论的见解相结合,以评估动态任务中的全身肌肉骨骼负荷。肌肉骨骼建模输出参数,即关节接触力和肌肉力,与考虑到负荷频率的组织特异性损伤阈值相结合,以确定肌肉、下背部和髋关节软骨的损伤风险。该新风险评估工具的潜力分别通过定义提升特性、背部和肩部外骨骼辅助、箱子转移、弯腰提升和架空布线任务来展示。MATE 确定了职业任务中不同解剖区域的 WMSD 风险,并允许评估干预措施对修改特定提升特性(即负载重量与任务重复次数)的影响。此外,与当前可用的人体工程学评估评分形成鲜明对比的是,外骨骼辅助水平对全身肌肉骨骼负荷(特别是肌肉、下背部和臀部)的 WMSD 风险的影响可以进行评估,并且表明肌肉骨骼负荷的减少很小,但损伤风险没有降低。因此,MATE 是一种基于全身肌肉骨骼建模方法并结合疲劳失效理论的见解的风险评估工具,展示了肩部和背部外骨骼的概念验证。此外,它考虑了受试者的特定特征(年龄和 BMI),进一步增强了个性化人体工程学风险评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49e5/9859546/415acd4d3a11/ijerph-20-01507-g0A1.jpg

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