视觉生物反馈信息对超伸膝关节控制的影响

Sung-hoon Jung, In-cheol Jeon, Sung-min Ha
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摘要

目的:膝关节过伸被描述为与膝关节伸肌机制受损相关的膝关节疼痛。此外,膝关节过伸可能涉及膝关节位置感降低,从而降低个体控制膝关节末端伸展运动的能力。本研究的目的是探讨视觉生物反馈信息对膝关节过伸患者的足底压力分布对膝关节角度和下肢肌肉活动的影响。方法:研究招募了23名膝关节过伸患者。记录股二头肌、股直肌、腓肠肌和胫前肌活动的表面肌电信号。利用压力分布测量板显示和测量足底压力分布。使用运动分析系统记录膝关节角度运动学参数。视觉生物反馈条件是在监测器上前足和后足足底压力差最小的点。采用Wilcoxon符号秩检验来确定视觉生物反馈条件与首选条件之间的显著性。结果:视觉生物反馈条件下膝关节角度较首选条件下明显减小(p<0.05)。在视觉生物反馈和首选条件下,股直肌和腓肠肌活动差异有统计学意义(p<0.05)。结论:足底压力分布信息的视觉生物反馈是矫正膝关节过伸的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects of Visual Biofeedback Information on Hyperextended Knee Control
Purpose: A hyperextended knee is described as knee pain associated with an impaired knee extensor mechanism. Additionally, a hyperextended knee may involve reduced position sense of the knee joint that decreases the individual’s ability to control end-range knee extension movement. The purpose of this study was to investigate the effects of visual biofeedback information for plantar pressure distribution on knee joint angle and lower extremity muscle activities in participants with hyperextended knees. Methods: Twenty-three participants with hyperextended knees were recruited for the study. Surface electromyography signals were recorded for the biceps femoris, rectus femoris, gastrocnemius, and tibialis anterior muscle activities. The plantar pressure distribution was displayed and measured using a pressure distribution measuring plate. Knee joint angle kinematic parameters were recorded using a mo-tion analysis system. The visual biofeedback condition was the point at which the difference between the forefoot and backfoot plantar foot pressure on the monitor was minimized. The Wilcoxon signed-rank test was used to determine the significance between the visual biofeedback condition and the preferred condition. Results: The knee joint angle was significantly decreased in the visual biofeedback condition compared to that in the preferred condition (p<0.05). The rectus femoris and gastrocnemius muscle activities were significantly different between the visual biofeedback and preferred conditions (p<0.05). Conclusion: The results of this study showed that visual biofeedback of information about plantar pressure distribution is effective for correcting hyperextended knees.
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