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提高股骨假体中基于非流体制动的摆动期控制机构的步态性能。

Improving the gait performance of non-fluid-based swing-phase control mechanisms in transfemoral prostheses.

出版信息

IEEE Trans Biomed Eng. 2011 Aug;58(8). doi: 10.1109/TBME.2011.2155059. Epub 2011 May 16.

Abstract

A prosthetic swing-phase control mechanism simulates the action of leg musculature, aiding gait function by controlling the duration of swing, extent of heel-rise, and by allowing the shank to smoothly decelerate into full knee extension without excessive impact. Non-fluid-based mechanisms have the potential to provide a durable and affordable solution as required in many parts of the world, but the design variables that lead to improved performance of non-fluid-based swing-phase control technologies are not well established. Seven transfemoral amputees were fitted with a prosthetic knee joint and different non-fluid-based swing-phase setups were systematically assessed. Clinical testing included walk tests utilizing a potentiometer (to measure knee flexion angles) and accelerometer (to measure terminal impact decelerations) mounted on the prosthetic limb. As hypothesized, the friction and spring systems improved gait function. This includes an increased walking speed that closely matched high-end hydraulic prosthetic knee joints, decreased and more normal maximum prosthetic knee flexion, decreased flexion duration, and lower terminal impact. Further improvements were obtained using a dual spring system, two springs in series, over the more conventional single spring system. Non-fluid-based swing-phase control mechanisms are simple and significantly improve the performance of prostheses. Their application is ideal where size, weight and cost may be constrained.

摘要

一种假肢摆动相控制机制模拟了腿部肌肉的作用,通过控制摆动的持续时间、足跟抬起的程度以及允许小腿顺畅减速至完全伸展而不会产生过大的冲击,从而帮助改善步态功能。非流体机制有可能成为世界上许多地区所需的耐用且经济实惠的解决方案,但导致非流体摆动相控制技术性能提高的设计变量尚未得到很好的确立。七名股骨截肢者配备了假肢膝关节,并系统地评估了不同的非流体摆动相设置。临床测试包括使用安装在假肢上的电位计(测量膝关节弯曲角度)和加速度计(测量末端冲击减速)进行的步行测试。正如假设的那样,摩擦和弹簧系统改善了步态功能。这包括行走速度的增加,非常接近高端液压假肢膝关节,最大假肢膝关节弯曲度的减少和更正常,弯曲持续时间的减少,以及末端冲击的降低。使用双弹簧系统(两个串联的弹簧)比更传统的单弹簧系统进一步提高了性能。非流体摆动相控制机制简单,可显著改善假肢的性能。在尺寸、重量和成本可能受到限制的情况下,它们的应用非常理想。

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