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使用被动背部支撑外骨骼时对举重和步态运动学的短期适应性

Short-Term Adaptations to Lifting and Gait Kinematics When Using a Passive Back-Support Exoskeleton.

作者信息

Subasinghe Duleepa, Aviles Jessica, Shayan Amir Mehdi, Srinivasan Divya

机构信息

Department of Industrial Engineering, Clemson University, Freeman Hall, Clemson, SC, 29634, USA.

Department of Bioengineering, Clemson University, Clemson, SC, 29634, USA.

出版信息

Ann Biomed Eng. 2025 Jun 18. doi: 10.1007/s10439-025-03770-7.

Abstract

Prior work quantifying the biomechanical effects of back-support exoskeleton use has mostly focused on the effects of brief periods of exposures to exoskeletons. Hence, there is currently limited understanding of how movement kinematics may be altered by more prolonged exposures. We assessed the effects of a 75-min exposure to a passive back-support exoskeleton on adaptations to lifting strategies, gait kinematics, and postural stability. Twelve participants performed tasks in an ABA protocol-measurements were obtained before (Pre-EXO phase), during (EXO-adaptation phase), and after exoskeleton-use (Post-EXO phase). A piecewise linear regression model was used to estimate changes to the dependent variables within and between each phase. Trunk range of motion (ROM), peak trunk flexion angle, and flexion velocity showed significant decrease (6-8%) on introduction of the exoskeleton, and significant reversals on doffing the exoskeleton. However, there were no significant adaptation effects (changes during EXO-adaptation phase) to trunk kinematics. For gait, a more cautious gait pattern was observed during exoskeleton-use: step length decreased, step width increased, minimum toe clearance increased, and hip ROM decreased, compared to the baseline Pre-EXO phase. These measures also reversed on doffing the exoskeleton and demonstrated further carry-over effects during the Post-EXO phase. However, no significant adaptations were evident in gait kinematics. Exoskeleton introduction, use, and doffing did not alter the cycle-to-cycle variability of trunk kinematics, or postural stability during static stance and maximum leans. These findings can help guide the practical development of training and use protocols for safe exoskeleton use in occupational settings.

摘要

此前量化背部支撑外骨骼使用的生物力学效应的研究主要集中在短期接触外骨骼的影响上。因此,目前对于更长时间接触外骨骼如何改变运动学知之甚少。我们评估了75分钟接触被动式背部支撑外骨骼对提升策略、步态运动学和姿势稳定性适应性的影响。12名参与者按照ABA方案执行任务——在使用外骨骼之前(外骨骼前阶段)、期间(外骨骼适应阶段)和之后(外骨骼后阶段)进行测量。使用分段线性回归模型来估计各阶段内和各阶段之间因变量的变化。引入外骨骼时,躯干运动范围(ROM)、躯干峰值屈曲角度和屈曲速度显著降低(6-8%),脱下外骨骼时显著逆转。然而,对于躯干运动学没有显著的适应效应(外骨骼适应阶段的变化)。对于步态,在使用外骨骼期间观察到更谨慎的步态模式:与基线外骨骼前阶段相比,步长减小,步宽增加,最小脚趾间隙增加,髋关节ROM减小。这些指标在脱下外骨骼时也会逆转,并在外骨骼后阶段表现出进一步的延续效应。然而,步态运动学方面没有明显的显著适应。外骨骼的引入、使用和脱下并没有改变躯干运动学的逐周期变异性,也没有改变静态站立和最大倾斜时的姿势稳定性。这些发现有助于指导在职业环境中安全使用外骨骼的训练和使用方案的实际开发。

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