踝关节外骨骼对中风后时空参数和压力轨迹中心的即时影响。

Mouhamed Zorkot, Andrezza Luiza Silva Viana, Fabricio Lima Brasil, Aline Layze Pereira Da Silva, Gabriel Fernandes Borges, Caroline Cunha Do Espirito Santo, Edgard Morya, Silvestro Micera, Solaiman Shokur, Mohamed Bouri
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引用次数: 0

摘要

步态障碍是脑卒中后受试者的常见疾病。我们最近推出了一种名为G-Exos的可穿戴脚踝外骨骼,该设备有助于脚踝的背屈和内翻/反转运动。当前试点研究的目的是探索与中风参与者使用G-Exos相关的时空步态参数和压力中心轨迹。三名卒中后受试者(52-63岁,2名女性/1名男性)在受影响的肢体上使用G-Exos行走160米,协议分为4个40米的区块:(I)不使用外骨骼,(II)使用系统混合系统,(III)仅主动和(IV)仅被动。结果表明,外骨骼的使用改善了四肢的摆动和站立阶段,减少了瘫痪肢体的步幅,增加了站立COP距离,并使瘫痪肢体和非瘫痪肢体之间的单支撑COP距离更加相似。这表明,所有G-Exos系统都有助于改善偏瘫肢体的体重承受能力和步态周期的对称性。
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Immediate Effect of Ankle Exoskeleton on Spatiotemporal Parameters and Center of Pressure Trajectory After Stroke.

Gait impairments is a common condition in post-stroke subjects. We recently presented a wearable ankle exoskeleton called G-Exos, which showed that the device assisted in the ankle's dorsiflexion and inversion/reversion movements. The aim of the current pilot study was to explore spatiotemporal gait parameters and center of pressure trajectories associated with the use of the G-Exos in stroke participants. Three post-stroke subjects (52-63 years, 2 female/1 male) walked 160-meter using the G-Exos on the affected limb, on a protocol divided into 4 blocks of 40-meters: (I) without the exoskeleton, (II) with systems hybrid system, (III) active only and (IV) passive only. The results showed that the use of the exoskeleton improved swing and stance phases on both limbs, reduced stride width on the paretic limb, increased stance COP distances, and made single support COP distances more similar between the paretic and non-paretic limb. This suggests that all G-Exos systems contributed to improving body weight bearing on the paretic limb and symmetry in the gait cycle.

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Individualized Three-Dimensional Gait Pattern Generator for Lower Limbs Rehabilitation Robots. Individualized Training of Back Muscles Using Iterative Learning Control of a Compliant Balance Board. Influence of Robotic Therapy on Severe Stroke Patients. INSPIIRE - A Modular and Passive Exoskeleton to Investigate Human Walking and Balance. Instrumented Upper Limb Functional Assessment Using a Robotic Exoskeleton: Normative References Intervals.
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