Groothuis Ashley, Houdijk Han
Department of Human Movement Sciences, Faculty of Behavioral and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, Netherlands.
Department of Research and Development, Heliomare Rehabilitation, Wijk aan Zee, Netherlands.
Front Sports Act Living. 2019 Aug 22;1:16. doi: 10.3389/fspor.2019.00016. eCollection 2019.
Running-specific prostheses (RSP) are designed to replicate the spring-like behavior of the biological leg in people with a lower limb amputation. Running performance strongly depends on stiffness of the RSP. The aim of this study was to investigate the effects of angle of alignment of the RSP on its stiffness, and how this affects total leg stiffness and the gait pattern during running. Ten able-bodied athletes performed eight trials on a treadmill with running-specific prosthetic simulators, while the alignment of the blades relative to the socket was set in four different angles (0, 5, 10, and 15°) during two different step frequency conditions (free and imposed). RSP stiffness, total leg stiffness, residual leg stiffness, and spatiotemporal parameters were measured. In both step frequency conditions, the RSP stiffness decreased linearly with increasing angle of alignment. Able bodied athletes were able to compensate for the decreased RSP stiffness, and keep total leg stiffness almost invariant, by increasing residual leg stiffness through a more straight the knee at initial contact. This study confirms that alignment is an important factor to take into account when optimizing the RSP. Whether the observed compensations are feasible in amputee athletes needs further investigation.
跑步专用假肢(RSP)旨在模仿下肢截肢者生物腿的弹簧状行为。跑步表现很大程度上取决于RSP的刚度。本研究的目的是调查RSP的对线角度对其刚度的影响,以及这如何影响跑步时的总腿刚度和步态模式。十名健全运动员在跑步机上使用跑步专用假肢模拟器进行了八次试验,在两种不同步频条件(自由和强制)下,将刀片相对于接受腔的对线设置为四个不同角度(0、5、10和15°)。测量了RSP刚度、总腿刚度、残肢刚度和时空参数。在两种步频条件下,RSP刚度均随对线角度增加而线性降低。健全运动员能够通过在初始接触时更伸直膝盖来增加残肢刚度,从而补偿RSP刚度的降低,并使总腿刚度几乎保持不变。本研究证实,对线是优化RSP时需要考虑的一个重要因素。观察到的这些补偿在截肢运动员中是否可行还需要进一步研究。