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用于步态再训练的实时视觉反馈:迈向在膝关节骨关节炎中的应用

Real-time visual feedback for gait retraining: toward application in knee osteoarthritis.

作者信息

van den Noort Josien C, Steenbrink Frans, Roeles Sanne, Harlaar Jaap

机构信息

Department of Rehabilitation Medicine, VU University Medical Center, PO Box 7057, 1007 MB, Amsterdam, The Netherlands,

出版信息

Med Biol Eng Comput. 2015 Mar;53(3):275-86. doi: 10.1007/s11517-014-1233-z. Epub 2014 Dec 6.

Abstract

Real-time visual feedback might be effective for gait retraining in patients with knee osteoarthritis, to potentially relieve symptoms and postpone knee replacement. In this study, we investigated the effect of various types of real-time visual feedback on a kinetic and a kinematic gait parameter and the different kinematic strategies adopted to reduce knee load. Seventeen healthy subjects walked on an instrumented treadmill while receiving real-time visual kinetic feedback aimed at minimizing the external knee adduction moment (KAdM, reflecting the knee load) or kinematic feedback on the hip internal rotation angle (HIR, a gait modification to reduce the KAdM). Four types of visual feedback (bar, polar plot, color change, graph) were provided. The KAdM decreased by 50 % with kinetic feedback, while kinematic feedback resulted in an HIR increase of 8° but no decrease in KAdM. The degree of change was not influenced by the type of visual feedback. The kinematic changes that reduced KAdM were increased toe-in, increased step width, and decreased hip adduction. Real-time visual feedback can effectively modify gait parameters. Feedback of the KAdM may be more effective in reducing the KAdM than controlling a kinematic parameter that is assumed to unload the knee.

摘要

实时视觉反馈可能对膝骨关节炎患者的步态再训练有效,从而有可能缓解症状并推迟膝关节置换。在本研究中,我们调查了各种类型的实时视觉反馈对动力学和运动学步态参数的影响,以及为减轻膝关节负荷而采用的不同运动学策略。17名健康受试者在装有仪器的跑步机上行走,同时接受旨在最小化膝关节外展力矩(KAdM,反映膝关节负荷)的实时视觉动力学反馈或关于髋关节内旋角度(HIR,一种减轻KAdM的步态改变)的运动学反馈。提供了四种类型的视觉反馈(条形图、极坐标图、颜色变化、图表)。动力学反馈使KAdM降低了50%,而运动学反馈使HIR增加了8°,但KAdM没有降低。变化程度不受视觉反馈类型的影响。降低KAdM的运动学变化包括增加内八字、增加步宽和减少髋关节内收。实时视觉反馈可以有效地改变步态参数。KAdM反馈在降低KAdM方面可能比控制一个假定能减轻膝关节负荷的运动学参数更有效。

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