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踝足矫形器刚度对下肢功能障碍患者步行性能的影响。

The influence of ankle-foot orthosis stiffness on walking performance in individuals with lower-limb impairments.

作者信息

Harper Nicole G, Esposito Elizabeth Russell, Wilken Jason M, Neptune Richard R

机构信息

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

Center for the Intrepid, Department of Orthopaedics and Rehabilitation, Brooke Army Medical Center, Ft. Sam Houston, TX 78234, USA.

出版信息

Clin Biomech (Bristol). 2014 Sep;29(8):877-84. doi: 10.1016/j.clinbiomech.2014.07.005. Epub 2014 Aug 8.

Abstract

BACKGROUND

Passive-dynamic ankle-foot orthoses utilize stiffness to improve gait performance through elastic energy storage and return. However, the influence of ankle-foot orthosis stiffness on gait performance has not been systematically investigated, largely due to the difficulty of manufacturing devices with precisely controlled stiffness levels. Additive manufacturing techniques such as selective laser sintering have been used to successfully manufacture ankle-foot orthoses with controlled stiffness levels. The purpose of this study was to use passive-dynamic ankle-foot orthoses manufactured with selective laser sintering to identify the influence of orthosis stiffness on walking performance in patients with lower-limb neuromuscular and musculoskeletal impairments.

METHODS

Thirteen subjects with unilateral impairments were enrolled in this study. For each subject, one passive-dynamic ankle-foot orthosis with stiffness equivalent to the subject's clinically prescribed carbon fiber orthosis, one 20% more compliant and one 20% more stiff, were manufactured using selective laser sintering. Three-dimensional kinematic and kinetic data and electromyographic data were collected from each subject while they walked overground with each orthosis at their self-selected velocity and a controlled velocity.

FINDINGS

As the orthosis stiffness decreased, ankle range of motion and medial gastrocnemius activity increased while the knee became more extended throughout stance. Minimal changes in other kinematic, kinetic and electromyographic quantities were observed.

INTERPRETATION

Subjects effectively compensated for changes in ankle-foot orthosis stiffness with altered gastrocnemius activity, and the stiffness levels analyzed in this study had a minimal effect on overall walking performance.

摘要

背景

被动动力型踝足矫形器利用刚度通过弹性能量储存和回用来改善步态表现。然而,踝足矫形器刚度对步态表现的影响尚未得到系统研究,这主要是由于制造具有精确控制刚度水平的装置存在困难。诸如选择性激光烧结等增材制造技术已被用于成功制造具有可控刚度水平的踝足矫形器。本研究的目的是使用通过选择性激光烧结制造的被动动力型踝足矫形器,来确定矫形器刚度对下肢神经肌肉和肌肉骨骼损伤患者步行表现的影响。

方法

本研究招募了13名单侧损伤的受试者。对于每个受试者,使用选择性激光烧结制造一个刚度与受试者临床规定的碳纤维矫形器相当的被动动力型踝足矫形器、一个柔顺性高20%的矫形器和一个刚度高20%的矫形器。当每个受试者以自选速度和控制速度穿着每个矫形器在地面行走时,收集其三维运动学和动力学数据以及肌电图数据。

结果

随着矫形器刚度降低,踝关节活动范围和腓肠肌内侧活动增加,而在整个站立期膝关节变得更加伸展。观察到其他运动学、动力学和肌电图量的变化极小。

解读

受试者通过改变腓肠肌活动有效地补偿了踝足矫形器刚度的变化,并且本研究中分析的刚度水平对整体步行表现的影响极小。

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