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基于实验室、实地和结果指标,比较减震型与刚性桩柱对降低经胫截肢者冲击力的效果。

Efficacy of shock-absorbing versus rigid pylons for impact reduction in transtibial amputees based on laboratory, field, and outcome metrics.

作者信息

Berge Jocelyn S, Czerniecki Joseph M, Klute Glenn K

机构信息

Department of Veterans Affairs (VA), Rehabilitation Research and Development Center of Excellence for Limb Loss Prevention and Prosthetic Engineering, VA Puget Sound Health Care System, Seattle, WA, USA.

出版信息

J Rehabil Res Dev. 2005 Nov-Dec;42(6):795-808. doi: 10.1682/jrrd.2005.02.0034.

DOI:10.1682/jrrd.2005.02.0034
PMID:16680617
Abstract

Prosthetic manufacturers have marketed shock-absorbing pylons (SAPs) for attenuation of injurious loads from foot-ground contact. In this study, we compared a commonly prescribed SAP with a conventional rigid pylon, using a within-subject design (n = 15 unilateral transtibial amputees), to assess effect on gait mechanics, measure transmitted accelerations in situ, and determine functional outcomes using step counts and questionnaires. No differences were found across pylons for self-selected walking speed, prosthetic-side step length, prosthetic-side loading rate and decelerative peak of the vertical ground reaction force, peak pylon acceleration, step count per week, or questionnaire results that examined pylon performance and subjects' pain and fatigue levels. The only statistically significant finding was for the prosthetic-side knee angle at initial contact, where subjects displayed an average of 2.6 degrees more flexion with the rigid pylon than the SAP while walking at a controlled speed (p = 0.004); this result indicates that transtibial amputees are able to modulate the effective stiffness of their residual limb in response to changes in prosthetic component stiffness. The results from the laboratory, field, and subjective outcome measurements suggest that the SAP in this study is as effective as a rigid pylon for unilateral transtibial amputees.

摘要

假肢制造商已推出减震桩(SAPs),用于减轻足部与地面接触产生的有害负荷。在本研究中,我们采用受试者自身对照设计(n = 15名单侧胫骨截肢者),将一种常用的处方SAP与传统刚性桩进行比较,以评估对步态力学的影响,原位测量传递加速度,并使用步数和问卷确定功能结果。在自定步行速度、假肢侧步长、假肢侧加载率、垂直地面反作用力的减速峰值、桩的峰值加速度、每周步数或检查桩性能以及受试者疼痛和疲劳水平的问卷结果方面,两种桩之间未发现差异。唯一具有统计学意义的发现是初始接触时假肢侧膝关节角度,在以受控速度行走时,受试者使用刚性桩比使用SAP时平均多屈曲2.6度(p = 0.004);这一结果表明,胫骨截肢者能够根据假肢部件刚度的变化调节残肢的有效刚度。实验室、现场和主观结果测量结果表明,本研究中的SAP对单侧胫骨截肢者的效果与刚性桩相同。

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Reducing stiffness of shock-absorbing pylon amplifies prosthesis energy loss and redistributes joint mechanical work during walking.减少减震塔架的僵硬程度会增加假肢的能量损失,并重新分配行走时关节的机械功。
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