首页> 外文期刊>Research in developmental disabilities >Gait strategy in patients with Ehlers-Danlos syndrome hypermobility type: a kinematic and kinetic evaluation using 3D gait analysis.
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Gait strategy in patients with Ehlers-Danlos syndrome hypermobility type: a kinematic and kinetic evaluation using 3D gait analysis.

机译:Ehlers-Danlos综合征活动过度类型患者的步态策略:使用3D步态分析的运动学和动力学评估。

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The aim of this study was to quantify the gait patterns of adults with joint hypermobility syndrome/Ehlers-Danlos syndrome (JHS/EDS-HT) hypermobility type, using Gait Analysis. We quantified the gait strategy in 12 JHS/EDS-HT adults individuals (age: 43.08+6.78 years) compared to 20 healthy controls (age: 37.23+/-8.91 years), in terms of kinematics and kinetics. JHS/EDS-HT individuals were characterized by a non-physiological gait pattern. In particular, spatio-temporal parameters evidenced lower anterior step length and higher stance phase duration in JHS/EDS-HT than controls. In term of kinematics, in JHS/EDS-HT patients the main gait limitations involved pelvis, distal joints and ankle joint. Conversely, hip and knee joint showed physiological values. Ankle moment and power revealed reduced peak values during terminal stance. Differences in stiffness at hip and ankle joints were found between JHS/EDS-HT and controls. JHS/EDS-HT patients showed significant decreased of Kh and Ka parameters very probably due to congenital hypotonia and ligament laxity. These findings help to elucidate the complex biomechanical changes in JHS/EDS-HT and may have a major role in the multidimensional evaluation and tailored management of these patients.
机译:这项研究的目的是通过步态分析来量化成年人关节活动过度综合征/ Ehlers-Danlos综合征(JHS / EDS-HT)运动过度类型的步态模式。在运动学和动力学方面,我们对12名JHS / EDS-HT成年人(年龄:43.08 + 6.78岁)与20名健康对照(年龄:37.23 +/- 8.91岁)的步态策略进行了量化。 JHS / EDS-HT个体的特征是非生理步态模式。特别是,时空参数证明JHS / EDS-HT中的前步长短且姿态阶段持续时间长于对照组。就运动学而言,在JHS / EDS-HT患者中,主要步态限制包括骨盆,远端关节和踝关节。相反,髋和膝关节显示出生理价值。脚踝力矩和力量表明,在站姿期间峰值降低。在JHS / EDS-HT与对照组之间,发现髋部和踝关节的刚度有所不同。 JHS / EDS-HT患者表现出Kh和Ka参数明显降低,这很可能是由于先天性肌张力低下和韧带松弛造成的。这些发现有助于阐明JHS / EDS-HT中复杂的生物力学变化,并且可能在这些患者的多维评估和量身定制管理中起主要作用。

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