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储能与回位足部刚度对膝下截肢者行走力学及肌肉活动的影响。

The influence of energy storage and return foot stiffness on walking mechanics and muscle activity in below-knee amputees.

作者信息

Fey Nicholas P, Klute Glenn K, Neptune Richard R

机构信息

Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Clin Biomech (Bristol). 2011 Dec;26(10):1025-32. doi: 10.1016/j.clinbiomech.2011.06.007. Epub 2011 Jul 20.

Abstract

BACKGROUND

Below-knee amputees commonly experience asymmetrical gait patterns and develop comorbidities in their intact and residual legs. Carbon fiber prosthetic feet have been developed to minimize these asymmetries by utilizing elastic energy storage and return to provide body support, forward propulsion and leg swing initiation. However, how prosthetic foot stiffness influences walking characteristics is not well-understood. The purpose of this study was to identify the influence of foot stiffness on kinematics, kinetics, muscle activity, prosthetic energy storage and return, and mechanical efficiency during amputee walking.

METHODS

A comprehensive biomechanical analysis was performed on 12 unilateral below-knee amputees. Subjects walked overground at 1.2 m/s with three prosthetic feet of varying keel and heel stiffness levels, which were created using additive manufacturing.

FINDINGS

As stiffness decreased, peak residual and intact leg ankle angles and residual leg knee flexion angle increased. The residual and intact leg braking ground reaction forces and knee extensor moments, residual leg vastus and gluteus medius activity, and intact leg vastus and rectus femoris activity also increased. The second vertical ground reaction force peak and hamstring activity in the residual leg and first vertical ground reaction force peak in the intact leg decreased. In addition, prosthetic energy storage and return increased and mechanical efficiency decreased as stiffness decreased.

INTERPRETATION

Decreasing foot stiffness can increase prosthesis range of motion, mid-stance energy storage and late-stance energy return, but the net contributions to forward propulsion and swing initiation may be limited as additional muscle activity to provide body support becomes necessary.

摘要

背景

膝下截肢者通常会出现不对称的步态模式,并在其健全和残肢上出现合并症。碳纤维假肢脚已被开发出来,通过利用弹性储能和回能来提供身体支撑、向前推进和腿部摆动启动,以尽量减少这些不对称性。然而,假肢脚的刚度如何影响行走特征尚不清楚。本研究的目的是确定脚刚度对截肢者行走时的运动学、动力学、肌肉活动、假肢能量储存和回能以及机械效率的影响。

方法

对12名单侧膝下截肢者进行了全面的生物力学分析。受试者使用三种通过增材制造制作的不同龙骨和脚跟刚度水平的假肢脚,以1.2米/秒的速度在地面行走。

结果

随着刚度降低,残肢和健全腿的踝关节峰值角度以及残肢的膝关节屈曲角度增加。残肢和健全腿的制动地面反作用力和膝关节伸肌力矩、残肢的股四头肌和臀中肌活动以及健全腿的股四头肌和股直肌活动也增加。残肢的第二个垂直地面反作用力峰值和腘绳肌活动以及健全腿的第一个垂直地面反作用力峰值降低。此外,随着刚度降低,假肢的能量储存和回能增加,机械效率降低。

解读

降低脚刚度可增加假肢的运动范围、支撑中期能量储存和支撑后期能量回能,但由于需要额外的肌肉活动来提供身体支撑,对向前推进和摆动启动的净贡献可能有限。

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