Modeling of Human-Exoskeleton Alignment and Its Effect on the Elbow Flexor and Extensor Muscles during Rehabilitation

Clarissa Rincon, Pablo Delgado, N. Hakansson, Yimesker Yihun
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Abstract

Human-exoskeleton misalignment could lead to permanent damages upon the targeted limb with long-term use in rehabilitation. Hence, achieving proper alignment is necessary to ensure patient safety and an effective rehabilitative journey. In this study, a joint-based and task-based exoskeleton for upper limb rehabilitation were modeled and assessed. The assessment examined and quantified the misalignment present at the elbow joint as well as its effects on the main flexor and extensor muscles’ tendon length during elbow flexion-extension. The effects of the misalignments found for both exoskeletons resulted to be minimal in most muscles observed, except the anconeus and brachialis. The anconeus muscle demonstrated a relatively higher variation in tendon length with the joint-based exoskeleton misalignment, indicating that the task-based exoskeleton is favored for tasks that involve this particular muscle. Moreover, the brachialis demonstrated a significantly higher variation with the task-based exoskeleton misalignment, indicating that the joint-based exoskeleton is favored for tasks that involve the muscle.
人体外骨骼对准模型及其对康复过程中肘关节屈伸肌的影响
人体外骨骼错位可能导致长期使用的目标肢体永久性损伤。因此,实现适当的对齐是必要的,以确保患者的安全和有效的康复之旅。在这项研究中,基于关节和基于任务的外骨骼用于上肢康复建模和评估。该评估检查并量化了肘关节的错位,以及它对肘关节屈伸时主要屈伸肌肌腱长度的影响。除了肩胛肌和肱肌外,两种外骨骼错位的影响在大多数观察到的肌肉中都很小。关节外骨骼错位时,踝关节肌的肌腱长度变化相对较大,这表明任务外骨骼更适合涉及这一特定肌肉的任务。此外,肱肌在任务型外骨骼错位中表现出明显更高的变异,表明基于关节的外骨骼更适合涉及肌肉的任务。
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