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评估用于机器人辅助治疗的踝关节评估技术的有效性。

Reviewing effectiveness of ankle assessment techniques for use in robot-assisted therapy.

作者信息

Zhang Mingming, Davies T Claire, Zhang Yanxin, Xie Shane

机构信息

Department of Mechanical Engineering, University of Auckland, Auckland, New Zealand.

出版信息

J Rehabil Res Dev. 2014;51(4):517-34. doi: 10.1682/JRRD.2013.03.0066.

Abstract

This article provides a comprehensive review of studies that investigated ankle assessment techniques to better understand those that can be used in the real-time monitoring of rehabilitation progress for implementation in conjunction with robot-assisted therapy. Seventy-six publications published between January 1980 and August 2013 were selected based on eight databases. They were divided into two main categories (16 qualitative and 60 quantitative studies): 13 goniometer studies, 18 dynamometer studies, and 29 studies about innovative techniques. A total of 465 subjects participated in the 29 quantitative studies of innovative measurement techniques that may potentially be integrated in a real-time monitoring device, of which 19 studies included less than 10 participants. Results show that qualitative ankle assessment methods are not suitable for real-time monitoring in robot-assisted therapy, though they are reliable for certain patients, while the quantitative methods show great potential. The majority of quantitative techniques are reliable in measuring ankle kinematics and kinetics but are usually available only for use in the sagittal plane. Limited studies determine kinematics and kinetics in all three planes (sagittal, transverse, and frontal) where motions of the ankle joint and the subtalar joint actually occur.

摘要

本文全面回顾了有关踝关节评估技术的研究,以便更好地了解哪些技术可用于康复进展的实时监测,从而与机器人辅助治疗相结合实施。基于八个数据库,选取了1980年1月至2013年8月期间发表的76篇出版物。它们分为两大类(16篇定性研究和60篇定量研究):13篇测角计研究、18篇测力计研究以及29篇关于创新技术的研究。共有465名受试者参与了29项可能会集成到实时监测设备中的创新测量技术的定量研究,其中19项研究的参与者少于10人。结果表明,定性踝关节评估方法虽然对某些患者可靠,但不适用于机器人辅助治疗中的实时监测,而定性方法则显示出巨大潜力。大多数定量技术在测量踝关节运动学和动力学方面是可靠的,但通常仅适用于矢状面。有限的研究确定了踝关节和距下关节实际发生运动的所有三个平面(矢状面、横断面和额状面)中的运动学和动力学。

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