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在日常无障碍活动中将轮椅动力学与盂肱关节需求联系起来。

Linking wheelchair kinetics to glenohumeral joint demand during everyday accessibility activities.

作者信息

Holloway Catherine S, Symonds Andrew, Suzuki Tatsuto, Gall Angela, Smitham Peter, Taylor Stephen

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:2478-81. doi: 10.1109/EMBC.2015.7318896.

Abstract

The aim of the study was to investigate if push-rim kinetics could be used as markers of glenohumeral joint demand during manual wheelchair accessibility activities; demonstrating a method of biomechanical analysis that could be used away from the laboratory. Propulsion forces, trunk and upper limb kinematics and surface electromyography were recorded during four propulsion tasks (level, 2.5% cross slope, 6.5% incline and 12% incline). Kinetic and kinematic data were applied to an OpenSim musculoskeletal model of the trunk and upper limb, to enable calculation of glenohumeral joint contact force. Results demonstrated a positive correlation between propulsion forces and glenohumeral joint contact forces. Both propulsion forces and joint contact forces increased as the task became more challenging. Participants demonstrated increases in trunk flexion angle as the requirement for force application increased, significantly so in the 12% incline. There were significant increases in both resultant glenohumeral joint contact forces and peak and mean normalized muscle activity levels during the incline tasks. This study demonstrated the high demand placed on the glenohumeral joint during accessibility tasks, especially as the gradient of incline increases. A lightweight instrumented wheelchair wheel has potential to guide the user to minimize upper limb demand during daily activity.

摘要

本研究的目的是调查在手动轮椅通过无障碍设施活动期间,推圈动力学是否可作为盂肱关节需求的指标;展示一种可在实验室外使用的生物力学分析方法。在四项推进任务(平路、2.5%横坡、6.5%斜坡和12%斜坡)过程中记录推进力、躯干和上肢运动学以及表面肌电图。将动力学和运动学数据应用于躯干和上肢的OpenSim肌肉骨骼模型,以计算盂肱关节接触力。结果表明推进力与盂肱关节接触力之间呈正相关。随着任务变得更具挑战性,推进力和关节接触力均增加。随着用力需求增加,参与者的躯干前屈角度增大,在12%斜坡时尤为明显。在斜坡任务期间,盂肱关节接触力合力以及峰值和平均标准化肌肉活动水平均显著增加。本研究表明在通过无障碍设施任务期间,盂肱关节承受的需求很高,尤其是随着斜坡坡度增加。一种轻型仪器化轮椅轮有潜力引导使用者在日常活动中尽量减少上肢需求。

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