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首页> 外文期刊>Clinical biomechanics >Effects of a knee-ankle-foot orthosis on gait biomechanical characteristics of paretic and non-paretic limbs in hemiplegic patients with genu recurvatum
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Effects of a knee-ankle-foot orthosis on gait biomechanical characteristics of paretic and non-paretic limbs in hemiplegic patients with genu recurvatum

机译:膝踝足矫形器对偏瘫膝瘫偏瘫患者步态和非步态肢体步态生物力学特性的影响

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Background: A knee-ankle-foot orthosis may be prescribed for the prevention of genu recurvatum during the stance phase of gait. It allows also to limit abnormal plantarflexion during swing phase. The aim is to improve gait in hemiplegic patients and to prevent articular degeneration of the knee. However, the effects of knee-ankle-foot orthosis on both the paretic and non-paretic limbs during gait have not been evaluated. The aim of this study was to quantify biomechanical adaptations induced by wearing a knee-ankle-foot orthosis, on the paretic and non-paretic limbs of hemiplegic patients during gait. Methods: Eleven hemiplegic patients with genu recurvatum performed two gait analyses (without and with the knee-ankle-foot orthosis). Spatio-temporal, kinematic and kinetic gait parameters of both lower limbs were quantified using an instrumented gait analysis system during the stance and swing phases of the gait cycle. Findings: The knee-ankle-foot orthosis improved spatio-temporal gait parameters. During stance phase on the paretic side, knee hyperextension was reduced and ankle plantarflexion and hip flexion were increased. During swing phase, ankle dorsiflexion increased in the paretic limb and knee extension increased in the non-paretic limb. The paretic limb knee flexion moment also decreased. Interpretation: Wearing a knee-ankle-foot orthosis improved gait parameters in hemiplegic patients with genu recurvatum. It increased gait velocity, by improving cadence, stride length and non-paretic step length. These spatiotemporal adaptations seem mainly due to the decrease in knee hyperextension during stance phase and to the increase in paretic limb ankle dorsiflexion during both phases of the gait cycle. ? 2012 Elsevier Ltd.
机译:背景:在步态站立阶段,可开具膝踝足矫形器以防止膝下翻。它也可以限制摆动阶段的异常足底弯曲。目的是改善半身不遂患者的步态并防止膝盖的关节变性。但是,尚未评估膝盖-脚踝-脚踝矫形器对步态中无坐骨和无坐骨肢体的影响。这项研究的目的是量化在偏瘫患者步态中偏瘫和非偏瘫肢体由于穿着膝踝足矫形器而引起的生物力学适应性。方法:11名膝下弯偏瘫患者进行了两次步态分析(无膝踝矫形器和膝踝脚矫形器)。在步态周期的站立和摆动阶段,使用仪器化步态分析系统对两个下肢的时空,运动和动力学步态参数进行定量。研究结果:膝踝足矫形器改善了时空步态参数。在坐姿一侧的站立阶段,膝部过度伸展减少,踝plant屈和髋部屈曲增加。在摆动阶段,假肢的踝背屈增加,非假肢的膝关节伸展增加。肢体膝盖屈曲力矩也减少了。解释:膝膝脚矫形器可改善偏瘫型膝偏瘫患者的步态参数。通过改善步频,步幅和非步态步长,可以提高步态速度。这些时空适应性似乎主要是由于在站立阶段膝关节过度伸展的减少和步态周期的两个阶段中肢体踝关节背屈的增加。 ? 2012爱思唯尔有限公司

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