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动力矫形器对截瘫患者行走能力的疗效。

The efficacy of powered orthoses on walking in persons with paraplegia.

作者信息

Arazpour Mokhtar, Hutchins Stephen William, Ahmadi Bani Monireh

机构信息

Department of Orthotics and Prosthetics, University of Social Welfare and Rehabilitation Science, Tehran, Islamic Republic of Iran.

IHSCR, Faculty of Health & Social Care, University of Salford, Greater Manchester, UK.

出版信息

Prosthet Orthot Int. 2015 Apr;39(2):90-9. doi: 10.1177/0309364613520031. Epub 2014 Feb 18.

Abstract

BACKGROUND

Powered orthoses are a new generation of assistive devices for people with spinal cord injury, which are designed to induce motion to paralyzed lower limb joints using external power via electric motors or pneumatic or hydraulic actuators.

OBJECTIVE

Powered gait orthoses provide activated movement of lower limb joints to limit the forces applied through the upper limb joints and trunk muscles during ambulation due to the need to use an external walking aid, while simultaneously improving the kinetics and kinematics of walking in subjects with spinal cord injury. This article reviews their walking efficacy when used by people with paraplegia.

STUDY DESIGN

Literature review.

METHOD

A literature search was performed in ISI Web of Knowledge, PubMed, Google Scholar, ScienceDirect, and Scopus databases.

RESULTS

Efficacy was demonstrated in producing activated motion of lower limb joints. Powered gait orthoses have a beneficial effect on the kinetics, kinematics, and temporal-spatial parameters of gait, but their effect on muscle activity in individuals with spinal cord injury is still unclear.

CONCLUSIONS

Further research is needed regarding the design and construction of powered gait orthoses using significant power application to the ankle joints and their effect on lower limb muscle activity and gait patterns in spinal cord injury subjects.

CLINICAL RELEVANCE

Powered orthoses is a new generation of orthotic intervention that could potentially be significant in assisting in improving the walking parameters and energy consumption of spinal cord injury subjects.

摘要

背景

动力矫形器是新一代用于脊髓损伤患者的辅助装置,其设计目的是通过电动马达、气动或液压致动器利用外部动力促使瘫痪的下肢关节运动。

目的

动力步态矫形器可使下肢关节产生主动运动,从而在行走时减少因需要使用外部助行器而通过上肢关节和躯干肌肉施加的力量,同时改善脊髓损伤患者的行走动力学和运动学。本文综述了截瘫患者使用动力步态矫形器时的行走效果。

研究设计

文献综述。

方法

在ISI Web of Knowledge、PubMed、谷歌学术、ScienceDirect和Scopus数据库中进行文献检索。

结果

已证实动力步态矫形器在促使下肢关节产生主动运动方面具有有效性。其对步态的动力学、运动学和时空参数具有有益影响,但对脊髓损伤个体肌肉活动的影响仍不明确。

结论

关于动力步态矫形器的设计和构造,尤其是在踝关节上施加较大动力及其对脊髓损伤患者下肢肌肉活动和步态模式的影响,仍需进一步研究。

临床意义

动力矫形器是新一代的矫形干预手段,可能在协助改善脊髓损伤患者的行走参数和能量消耗方面具有重要意义。

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