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Energy flow analysis of amputee walking shows a proximally-directed transfer of energy in intact limbs, compared to a distally-directed transfer in prosthetic limbs at push-off

机译:截肢者行走的能量流量分析显示,与推截面的假体四肢中的远端转移相比,在完整的四肢中近侧导向的能量转移

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摘要

Reduced capacity and increased metabolic cost of walking occurs in amputees, despite advances in prosthetic componentry. Joint powers can quantify deficiencies in prosthetic gait, but do not reveal how energy is exchanged between limb segments. This study aimed to quantify these energy exchanges during amputee walking. Optical motion and forceplate data collected during walking at a self-selected speed for cohorts of 10 controls, 10 unilateral trans-tibial, 10 unilateral trans-femoral and 10 bilateral trans-femoral amputees were used to determine the energy exchanges between lower limb segments. At push-off, consistent thigh and shank segment powers were observed between amputee groups (1.12W/kg vs. 1.05W/kg for intact limbs and 0.97W/kg vs. 0.99W/kg for prosthetic limbs), and reduced prosthetic ankle power, particularly in trans-femoral amputees (3.12W/kg vs. 0.87W/kg). Proximally-directed energy exchange was observed in the intact limbs of amputees and controls, while prosthetic limbs displayed distally-directed energy exchanges at the knee and hip. This study used energy flow analysis to show a reversal in the direction in which energy is exchanged between prosthetic limb segments at push-off. This reversal was required to provide sufficient energy to propel the limb segments and is likely a direct result of the lack of push-off power at the prosthetic ankle, particularly in trans-femoral amputees, and leads to their increased metabolic cost of walking.
机译:尽管假肢组件有所发展,但截肢者的行走能力下降,新陈代谢成本增加。联合力量可以量化假肢步态的缺陷,但不能揭示肢体各节之间如何进行能量交换。这项研究旨在量化被截肢者行走过程中的这些能量交换。在以10个对照,10个单侧经胫骨,10个单侧经股骨截肢者和10个双侧经股骨截肢者的队列中以自选速度行走期间收集的光学运动和力板数据用于确定下肢节段之间的能量交换。推下时,截肢者组之间观察到一致的大腿和小腿节段功率(完整肢体为1.12W / kg相对于1.05W / kg,假肢为0.97W / kg相对于0.99W / kg),并且假肢踝关节减小功率,尤其是跨股截肢者的功率(3.12W / kg对0.87W / kg)。在截肢者和对照组的完整肢体中观察到了近端定向的能量交换,而假肢在膝盖和髋部表现出了远端定向的能量交换。这项研究使用能量流分析显示了在下肢假肢肢体之间能量交换方向的逆转。需要这种反转以提供足够的能量来推动肢体节段,并且这可能是假肢脚踝(尤其是经股截肢者)脚踝缺乏推力的直接结果,并导致其步行的代谢成本增加。

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