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首页> 外文期刊>Gait & posture >Gait and neuromuscular adaptations after using a feedback-based gait monitoring knee brace.
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Gait and neuromuscular adaptations after using a feedback-based gait monitoring knee brace.

机译:使用基于反馈的步态监测膝盖支撑后的步态和神经肌肉适应性。

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PURPOSE: The purpose of this study was to evaluate the gait and neuromuscular effects of a feedback-based gait monitoring knee brace. The aim of this paper was to explore how training with this knee brace affected the gait pattern utilized, rate of loading (ROL), and proprioceptive acuity. METHODS: Fifteen healthy women wore this knee brace that provided audible feedback on gait kinematics for a 30-min training period. We performed pre- and post-gait analyses and proprioceptive acuity assessments to determine gait learning and adaptation with this training. RESULTS: Post-training significant changes were seen in the knee angle prior to and at initial contact and peak knee extensor, flexor, and adductor moments, which ultimately led to a reduced ROL experienced. Subjects also had improved proprioceptive acuity post-training. INTERPRETATIONS: Our results indicate that using a feedback-based gait monitoring knee brace can change the gait pattern by increasing the knee flexion angle during the swing to stance transition. Though there was an approximate 25% decrease in the ROL experienced, there was also an increase in the knee adductor moment. Future long-term studies are needed to further explore the positive and negative effects of feedback-based gait monitoring knee brace on individuals with a compromised knee joint, such as those post-anterior cruciate ligament injury.
机译:目的:本研究的目的是评估基于反馈的步态监测护膝的步态和神经肌肉作用。本文的目的是探讨使用这种膝盖支撑架进行的训练如何影响所利用的步态,负荷率(ROL)和本体感受敏锐度。方法:15名健康妇女穿着此护膝,可在30分钟的训练期间提供有关步态运动学的可听见反馈。我们进行了步态之前和之后的分析以及本体感觉敏锐度评估,以确定这种训练的步态学习和适应性。结果:训练后,在初次接触之前和在膝关节角度观察到了显着变化,并且最大的伸膝,屈肌和内收肌力矩达到峰值,最终导致了ROL降低。受试者在训练后的本体感觉敏锐度也得到了改善。解释:我们的结果表明,使用基于反馈的步态监视膝盖支撑可以在摆动到站立过渡期间增加膝盖的弯曲角度来改变步态模式。尽管所经历的ROL降低了约25%,但膝盖内收肌力矩也有所增加。需要进一步的长期研究,以进一步探讨基于反馈的步态监测护膝对膝关节受损(例如前交叉韧带损伤)的个体的正面和负面影响。

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