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对工业工作场所中商用的软质和硬质被动式背部外骨骼进行基准测试。

Benchmarking commercially available soft and rigid passive back exoskeletons for an industrial workplace.

作者信息

Mohamed Refai Mohamed I, Moya-Esteban Alejandro, van Zijl Lynn, van der Kooij Herman, Sartori Massimo

机构信息

Department of Biomechanical Engineering, University of Twente, Enschede, The Netherlands.

出版信息

Wearable Technol. 2024 Feb 15;5:e6. doi: 10.1017/wtc.2024.2. eCollection 2024.

Abstract

Low-back pain is a common occupational hazard for industrial workers. Several studies show the advantages of using rigid and soft back-support passive exoskeletons and exosuits (exos) to reduce the low-back loading and risk of injury. However, benefits of using these exos have been shown to be task-specific. Therefore, in this study, we developed a benchmarking approach to assess exos for an industrial workplace at Hankamp Gears B.V. We assessed two rigid (Laevo Flex, Paexo back) and two soft (Auxivo Liftsuit 1.0, and Darwing Hakobelude) exos for tasks resembling the workplace. We measured the assistive moment provided by each exo and their respective influence on muscle activity as well as the user's perception of comfort and exertion. Ten participants performed four lifting tasks ( hold, , , and ), while their electromyography and subjective measures were collected. The two rigid exos provided the largest assistance during the tasks. Reductions in erector spinae activity were seen to be task-specific, with larger reductions for the two rigid exos. Overall, Laevo Flex offered a good balance between assistive moments, reductions in muscle activity, as well as user comfort and reductions in perceived exertion. Thus, we recommend benchmarking exos for intended use in the industrial workplace. This will hopefully result in a better adoption of the back-support exoskeletons in the workplace and help reduce low-back pain.

摘要

下背痛是产业工人常见的职业危害。多项研究表明,使用刚性和软性背部支撑被动外骨骼和外穿式机械装置(外骨骼)来减轻下背部负荷和受伤风险具有诸多益处。然而,使用这些外骨骼的益处已被证明具有任务特异性。因此,在本研究中,我们开发了一种基准测试方法,以评估汉坎普齿轮有限公司工业工作场所使用的外骨骼。我们针对类似工作场所的任务评估了两种刚性外骨骼(Laevo Flex、Paexo back)和两种软性外骨骼(Auxivo Liftsuit 1.0和Darwing Hakobelude)。我们测量了每种外骨骼提供的辅助力矩及其对肌肉活动的各自影响,以及用户对舒适度和用力程度的感知。十名参与者执行了四项举重任务(握持、[此处原文缺失具体任务内容]、[此处原文缺失具体任务内容]和[此处原文缺失具体任务内容]),同时收集了他们的肌电图和主观测量数据。在[此处原文缺失具体任务内容]任务期间,两种刚性外骨骼提供了最大的辅助。竖脊肌活动的减少具有任务特异性,两种刚性外骨骼的减少幅度更大。总体而言,Laevo Flex在外辅助力矩、肌肉活动减少、用户舒适度以及感知用力减少之间实现了良好的平衡。因此,我们建议对工业工作场所预期使用的外骨骼进行基准测试。这有望使工作场所更好地采用背部支撑外骨骼,并有助于减轻下背痛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e538/10952052/e3d3c4ed571f/S2631717624000021_fig1.jpg

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