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假肢踝关节刚度对胫骨截肢者步态的踝关节和膝关节运动学、假肢肢体负荷及净代谢成本的影响。

The effects of prosthetic ankle stiffness on ankle and knee kinematics, prosthetic limb loading, and net metabolic cost of trans-tibial amputee gait.

作者信息

Major Matthew J, Twiste Martin, Kenney Laurence P J, Howard David

机构信息

Northwestern University Prosthetics-Orthotics Center, Northwestern University, Chicago, USA; Centre for Health Sciences Research, University of Salford, Greater Manchester, UK.

Centre for Health Sciences Research, University of Salford, Greater Manchester, UK; UNIPOD - United National Institute for Prosthetics & Orthotics Development, University of Salford, Greater Manchester, UK.

出版信息

Clin Biomech (Bristol). 2014 Jan;29(1):98-104. doi: 10.1016/j.clinbiomech.2013.10.012. Epub 2013 Oct 26.

Abstract

BACKGROUND

Previous studies of commercially-available trans-tibial prosthetic components have been unable to provide clear insight into the relationships between prosthetic mechanical properties and user performance (i.e., gait quality and energy expenditure), the understanding of which is key to improving prosthesis design and prescription. Many of these studies have been limited by not characterising the mechanical properties of the tested prostheses and/or only considered level walking at self-selected speeds. The aim of this study was to conduct a systematic investigation of the effects of ankle rotational stiffness on trans-tibial amputee gait during various walking conditions reflective of those encountered during daily ambulation.

METHODS

Ankle and knee kinematics, prosthetic limb normal ground reaction forces, and net metabolic cost were measured in five traumatic unilateral trans-tibial amputees during treadmill walking on the level, a 5% incline and a 5% decline whilst using an experimental articulated prosthetic foot with four different rotational stiffness setups and without changes in alignment between conditions.

FINDINGS

Overall, lower dorsiflexion stiffness resulted in greater prosthetic side dorsiflexion motion and sound side knee flexion, reduced normal ground reaction force during the loading phase of prosthetic stance and reduced net metabolic cost.

INTERPRETATION

Few differences were observed with changes in plantarflexion stiffness, most likely due to the foot achieving early foot flat. Low dorsiflexion stiffness generally improved gait performance seemingly due to easier tibial progression during stance. However, observed differences were small, suggesting that a wider range of walking and stiffness conditions would be useful to fully explore these effects in future studies.

摘要

背景

先前对市售经胫假肢组件的研究未能清晰洞察假肢机械性能与使用者表现(即步态质量和能量消耗)之间的关系,而了解这些关系是改进假肢设计和处方的关键。这些研究中的许多都受到限制,要么未对测试假肢的机械性能进行表征,要么仅考虑了自选速度下的平地行走。本研究的目的是系统调查在反映日常行走中遇到的各种行走条件下,踝关节旋转刚度对经胫截肢者步态的影响。

方法

在五名创伤性单侧经胫截肢者使用具有四种不同旋转刚度设置且各条件下对线无变化的实验性关节假肢在跑步机上进行平地行走、5%上坡和5%下坡行走时,测量踝关节和膝关节运动学、假肢侧正常地面反作用力以及净代谢成本。

结果

总体而言,较低的背屈刚度导致假肢侧背屈运动更大、健侧膝关节屈曲增加、假肢支撑期加载阶段的正常地面反作用力降低以及净代谢成本降低。

解读

随着跖屈刚度的变化观察到的差异很少,很可能是由于足部过早达到足放平状态。低背屈刚度通常会改善步态表现,这似乎是因为站立时胫骨推进更容易。然而,观察到的差异很小,这表明在未来的研究中,更广泛的行走和刚度条件将有助于充分探索这些影响。

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