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Kinetics of transfemoral amputees with osseointegrated fixation performing common activities of daily living.

机译:经骨整合固定的经股截肢者的动力学执行日常生活中的常见活动。

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BACKGROUND: Direct anchorage of a lower-limb prosthesis to the bone through an implanted fixation (osseointegration) has been suggested as an excellent alternative for amputees experiencing complications from use of a conventional socket-type prosthesis. However, an attempt needs to be made to optimize the mechanical design of the fixation and refine the rehabilitation program. Understanding the load applied on the fixation is a crucial step towards this goal. METHODS: The load applied on the osseointegrated fixation of nine transfemoral amputees was measured using a load transducer, when the amputees performed activities which included straight-line level walking, ascending and descending stairs and a ramp as well as walking around a circle. Force and moment patterns along each gait cycle, magnitudes and time of occurrence of the local extrema of the load, as well as impulses were analysed. FINDINGS: Managing a ramp and stairs, and walking around a circle did not produce a significant increase (P>0.05) in load compared to straight-line level walking. The patterns of the moment about the medio-lateral axis were different among the six activities which may reflect the different strategies used in controlling the prosthetic knee joint. INTERPRETATIONS: This study increases the understanding of biomechanics of bone-anchored osseointegrated prostheses. The loading data provided will be useful in designing the osseointegrated fixation to increase the fatigue life and to refine the rehabilitation protocol.
机译:背景:已提出通过植入固定装置(骨整合)将下肢假体直接锚固至骨骼,是截肢者因使用常规承窝型假体而出现并发症的极佳选择。但是,需要尝试优化固定的机械设计并完善康复计划。了解施加在固定装置上的负载是实现该目标的关键步骤。方法:当负荷截肢者进行的活动包括直线水平行走,上升和下降楼梯以及斜坡和绕圈行走时,使用负荷传感器测量了9个经股截肢者的骨整合固定所施加的负荷。分析了每个步态周期中的力和力矩模式,负载局部极值的大小和发生时间以及脉冲。结果:与直线水平行走相比,管理坡道和楼梯以及绕圈行走不会使负荷显着增加(P> 0.05)。在这六项活动中,围绕中外侧轴的力矩模式是不同的,这可能反映了在控制假肢膝关节中使用的不同策略。解释:这项研究增加了对骨锚固骨集成假体的生物力学的理解。提供的载荷数据将有助于设计骨整合固定,以延长疲劳寿命并改善康复方案。

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