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The Influence of Inertial Forces on Manual Wheelchair Propulsion

机译:惯性力对手动轮椅推进的影响

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Both experimental and computational studies have contributed to the understanding of the loads during wheelchair propulsion and the factors leading to the incidence of musculoskeletal disorders. However, few studies have addressed the influence of inertial forces on wheelchair propulsion, which are potentially large as upper limb segments undergo large accelerations along the different phases of the propulsion cycle. This study determines and investigates the influence of inertial forces during manual wheelchair propulsion for a subject at two different locomotion velocities. The isolated influence of inertial as well as gravitational forces is determined using a planar model of the upper extremity and an inverse-dynamics approach. The results show that the inertial forces are preponderant even at lower speeds. These findings evidence that quasi-static models are inappropriate to investigate wheelchair propulsion and show the importance of accurate estimation of anthropometric parameters such as segment masses and moments of inertia, which directly affect inertial force estimations in inverse dynamics-based studies of wheelchair propulsion. The results can also help guide investigations on efficient propulsion techniques, as they show that the radial component of the pushrim forces are, to a large extent, determined by inertial effects rather than by an inefficient propulsion technique.
机译:实验和计算研究的既是对驾驶舱推进过程中的负荷的理解有助于,导致肌肉骨骼障碍发生率的因素。然而,很少有研究解决了惯性力对轮椅推进的影响,这可能大,因为上肢段沿着推进循环的不同阶段经历大加速度。本研究确定并研究了两种不同运动速度手动轮椅推进过程中的惯性力的影响。使用上肢的平面模型和逆动力学方法确定惯性和重力的孤立的影响。结果表明,即使以较低的速度,惯性力也是优势。这些发现证据证明准静态模型不适合调查轮椅推进,并表明准确估计人类测量参数如惯性等块和惯性矩的重要性,这直接影响了轮椅推进的逆动力学研究中的惯性力估计。结果还可以帮助指导有效推进技术的研究,因为它们表明推挽力的径向分量在很大程度上通过惯性效应而不是通过低效的推进技术来确定。

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