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Sliding and Lower Limb Mechanics during Sit-Stand-Sit Transitions with a Standing Wheelchair

机译:站立轮椅坐站过渡期间的滑动和下肢力学

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摘要

Purpose. This study aimed to investigate the shear displacement between the body and backrest/seat, range of motion (ROM), and force acting on the lower limb joints during sit-stand-sit transitions by operating an electric-powered standing wheelchair. Methods and Materials. The amounts of sliding along the backrest and the seat plane, ROM of lower limb joints, and force acting on the knee/foot were measured in twenty-four people with paraplegia. Results. Without an antishear mechanism, the shear displacement was approximately 9 cm between the user's body and the backrest/seat surfaces. During standing up, the user's back slid down and the thigh was displaced rearward, but they moved in opposite directions when wheelchair sat back down. A minimum of 60 degrees of ROM at the hip and knee was needed during sit-stand-sit transitions. The maximal resultant forces acting on the knee restraints could reach 23.5% of body weight. Conclusion. Sliding between the body and backrest/seat occurred while transitioning from sitting to standing and vice versa. A certain amount of ROM at lower limb joints and force acting on the knee was necessitated during sit-stand-sit transitions. Careful consideration needs to be given to who the user of the electric powered standing wheelchair is.
机译:目的。这项研究的目的是通过操作电动站立轮椅,研究人体与靠背/座椅之间的剪切位移,运动范围(ROM)以及在坐立起坐过渡期间作用于下肢关节的力。方法和材料。测量了24名截瘫患者的沿着靠背和座椅平面的滑动量,下肢关节的ROM以及作用在膝盖/脚上的力。结果。没有防剪机构,使用者的身体与靠背/座椅表面之间的剪切位移约为9 cm。在站立过程中,使用者的背部向下滑落,大腿向后移动,但是当轮椅向后坐时,它们向相反的方向移动。从坐到站的过渡过程中,臀部和膝盖至少需要60度ROM。作用在膝盖约束上的最大合力可能达到体重的23.5%。结论。从坐姿过渡到站立姿时,身体与靠背/座椅之间发生了滑动,反之亦然。在坐立起坐过渡过程中,需要在下肢关节处施加一定数量的ROM,并在膝盖上施加作用力。需要仔细考虑电动站立轮椅的使用者是谁。

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