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一种用于减轻日常生活活动中骨关节炎疼痛的任务无关型膝关节外骨骼:一项初步研究。

A Task-Agnostic Knee Exoskeleton for Reducing Osteoarthritis Pain Across Activities of Daily Life: A Pilot Study.

作者信息

Divekar Nikhil V, Hinojosa Ernesto Hernandez, Zhang Jiefu, Gregg Robert D

出版信息

IEEE Int Conf Rehabil Robot. 2025 May;2025:1437-1443. doi: 10.1109/ICORR66766.2025.11063102.

DOI:10.1109/ICORR66766.2025.11063102
PMID:40644046
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12258921/
Abstract

Patellofemoral osteoarthritis is a prevalent musculoskeletal disorder characterized by knee pain during physically demanding activities like stair climbing and sit-to-stand transitions. These movements require high knee extension torques, leading to increased quadriceps activation and patellofemoral joint compression, which aggravates pain. While external torque assistance at the knee joint could theoretically reduce joint loads, traditional exoskeletons have not proven effective in managing osteoarthritis due to their rigid actuation, cumber-some attachments, and inadequate control systems. We address these limitations by modifying a commercial post-operative knee brace with a highly-backdrivable actuator and adapting a task-agnostic torque-assist controller, originally designed for lifting and carrying tasks, to accommodate osteoarthritis patients. In pilot trials with four participants with patellofemoral osteoarthritis, our device facilitated substantial reductions in both pain and perceived difficulty across daily activities including stair/ramp navigation, walking, and sit-to-stand transitions. Across all participants and tasks, pain and difficulty were reduced by 0.82 and 0.57 points, respectively (on a scale of 0 to 4). Electromyography revealed decreased quadriceps activation, varying by participant and task. These preliminary findings motivate future research on backdrivable knee exoskeletons as a novel conservative treatment for patellofemoral osteoarthritis.

摘要

髌股关节炎是一种常见的肌肉骨骼疾病,其特征是在爬楼梯和从坐姿到站立姿势转换等需要体力的活动中出现膝盖疼痛。这些动作需要较大的膝关节伸展扭矩,导致股四头肌激活增加和髌股关节受压,从而加重疼痛。虽然理论上膝关节的外部扭矩辅助可以减少关节负荷,但传统的外骨骼由于其刚性驱动、笨重的附件和不完善的控制系统,在治疗骨关节炎方面尚未证明有效。我们通过用高回差驱动的致动器对商用术后膝关节支具进行改造,并采用最初为提升和搬运任务设计的与任务无关的扭矩辅助控制器,以适应骨关节炎患者,从而解决了这些局限性。在对四名髌股关节炎患者进行的试点试验中,我们的设备显著减轻了包括上下楼梯/坡道、行走和从坐姿到站立姿势转换等日常活动中的疼痛和感知难度。在所有参与者和任务中,疼痛和难度分别降低了0.82分和0.57分(评分范围为0至4分)。肌电图显示股四头肌激活减少,因参与者和任务而异。这些初步发现激发了对可回差驱动的膝关节外骨骼作为髌股关节炎新型保守治疗方法的未来研究。

相似文献

1
A Task-Agnostic Knee Exoskeleton for Reducing Osteoarthritis Pain Across Activities of Daily Life: A Pilot Study.一种用于减轻日常生活活动中骨关节炎疼痛的任务无关型膝关节外骨骼:一项初步研究。
IEEE Int Conf Rehabil Robot. 2025 May;2025:1437-1443. doi: 10.1109/ICORR66766.2025.11063102.
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本文引用的文献

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A Modular Framework for Task-Agnostic, Energy Shaping Control of Lower Limb Exoskeletons.一种用于下肢外骨骼的任务无关型能量整形控制的模块化框架。
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A versatile knee exoskeleton mitigates quadriceps fatigue in lifting, lowering, and carrying tasks.一种通用的膝关节外骨骼可减轻举升、降低和搬运任务中的股四头肌疲劳。
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Biomechanical Study of a Tricompartmental Unloader Brace for Patellofemoral or Multicompartment Knee Osteoarthritis.用于髌股关节或多间室膝关节骨关节炎的三室卸载支具的生物力学研究
Front Bioeng Biotechnol. 2021 Jan 28;8:604860. doi: 10.3389/fbioe.2020.604860. eCollection 2020.
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Evaluation of a lower-extremity robotic exoskeleton for people with knee osteoarthritis.用于膝骨关节炎患者的下肢机器人外骨骼评估。
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Muscle Eccentric Contractions Increase in Downhill and High-Grade Uphill Walking.肌肉离心收缩在下山行走和高坡度上山行走时会增加。
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