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轮椅推进生物力学:对轮椅运动的影响。

Wheelchair propulsion biomechanics: implications for wheelchair sports.

作者信息

Vanlandewijck Y, Theisen D, Daly D

机构信息

Department of Rehabilitation Sciences, Faculty of Physical Education and Physiotherapy, Katholieke Universiteit Leuven, Belgium.

出版信息

Sports Med. 2001;31(5):339-67. doi: 10.2165/00007256-200131050-00005.

Abstract

The aim of this article is to provide the reader with a state-of-the-art review on biomechanics in hand rim wheelchair propulsion, with special attention to sport-specific implications. Biomechanical studies in wheelchair sports mainly aim at optimising sport performance or preventing sport injuries. The sports performance optimisation question has been approached from an ergonomic, as well as a skill proficiency perspective. Sports medical issues have been addressed in wheelchair sports mainly because of the extremely high prevalence of repetitive strain injuries such as shoulder impingement and carpal tunnel syndrome. Sports performance as well as sports medical reflections are made throughout the review. Insight in the underlying musculoskeletal mechanisms of hand rim wheelchair propulsion has been achieved through a combination of experimental data collection under realistic conditions, with a more fundamental mathematical modelling approach. Through a synchronised analysis of the movement pattern, force generation pattern and muscular activity pattern, insight has been gained in the hand rim wheelchair propulsion dynamics of people with a disability, varying in level of physical activity and functional potential. The limiting environment of a laboratory, however, has hampered the drawing of sound conclusions. Through mathematical modelling, simulation and optimisation (minimising injury and maximising performance), insight in the underlying musculoskeletal mechanisms during wheelchair propulsion is sought. The surplus value of inverse and forward dynamic simulation of hand rim stroke dynamics is addressed. Implications for hand rim wheelchair sports are discussed. Wheelchair racing, basketball and rugby were chosen because of the significance and differences in sport-specific movement dynamics. Conclusions can easily be transferred to other wheelchair sports where movement dynamics are fundamental.

摘要

本文旨在为读者提供一篇关于手动轮椅推进生物力学的最新综述,特别关注特定运动的影响。轮椅运动中的生物力学研究主要旨在优化运动表现或预防运动损伤。运动表现优化问题已从人体工程学以及技能熟练程度的角度进行探讨。轮椅运动中的运动医学问题主要是由于重复性劳损损伤(如肩部撞击和腕管综合征)的极高患病率而受到关注。在整个综述中都对运动表现以及运动医学方面进行了思考。通过在现实条件下收集实验数据,并结合更基础的数学建模方法,对手动轮椅推进的潜在肌肉骨骼机制有了深入了解。通过对运动模式、力产生模式和肌肉活动模式的同步分析,了解了身体活动水平和功能潜力各异的残疾人的手动轮椅推进动力学。然而,实验室的受限环境阻碍了得出可靠的结论。通过数学建模、模拟和优化(最小化损伤并最大化表现),寻求对手动轮椅推进过程中潜在肌肉骨骼机制的深入了解。探讨了手动轮冲程动力学的逆动力学和正向动力学模拟的附加值。讨论了对手动轮椅运动的影响。选择轮椅竞速、篮球和橄榄球是因为它们在特定运动的运动动力学方面具有重要意义和差异。结论可以很容易地推广到其他以运动动力学为基础的轮椅运动中。

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