Slowik Jonathan S, Requejo Philip S, Mulroy Sara J, Neptune Richard R
Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX, USA.
Pathokinesiology Laboratory, Rancho Los Amigos National Rehabilitation Center, Downey, CA, USA; Rehabilitation Engineering, Rancho Los Amigos National Rehabilitation Center, Downey, CA, USA.
Clin Biomech (Bristol). 2015 Nov;30(9):927-32. doi: 10.1016/j.clinbiomech.2015.07.007. Epub 2015 Jul 21.
The hand pattern used during manual wheelchair propulsion (i.e., full-cycle hand path) can provide insight into an individual's propulsion technique. However, previous analyses of hand patterns have been limited by their focus on a single propulsion condition and reliance on subjective qualitative characterization methods. The purpose of this study was to develop a set of objective quantitative parameters to characterize hand patterns and determine the influence of propulsion speed and grade of incline on the patterns preferred by manual wheelchair users.
Kinematic and kinetic data were collected from 170 experienced manual wheelchair users on an ergometer during three conditions: level propulsion at their self-selected speed, level propulsion at their fastest comfortable speed and graded propulsion (8%) at their level self-selected speed. Hand patterns were quantified using a set of objective parameters, and differences across conditions were identified.
Increased propulsion speed resulted in a shift away from under-rim hand patterns. Increased grade of incline resulted in the hand remaining near the handrim throughout the cycle.
Manual wheelchair users change their hand pattern based on task-specific constraints and goals. Further work is needed to investigate how differences between hand patterns influence upper extremity demand and potentially lead to the development of overuse injuries and pain.
手动轮椅推进过程中使用的手部模式(即全周期手部路径)可以为了解个体的推进技术提供线索。然而,以往对手部模式的分析存在局限性,主要集中在单一推进条件上,且依赖主观定性描述方法。本研究的目的是开发一套客观的定量参数来描述手部模式,并确定推进速度和坡度对手动轮椅使用者偏好模式的影响。
在测力计上,从170名经验丰富的手动轮椅使用者身上收集运动学和动力学数据,共三种条件:以自选速度进行水平推进、以最快舒适速度进行水平推进以及以自选水平速度进行分级推进(8%)。使用一组客观参数对手部模式进行量化,并确定不同条件之间的差异。
推进速度增加导致远离轮缘下方的手部模式。坡度增加导致手部在整个周期内保持靠近轮缘。
手动轮椅使用者根据特定任务的限制和目标改变他们的手部模式。需要进一步开展工作,以研究手部模式之间的差异如何影响上肢需求,并可能导致过度使用损伤和疼痛的发生。