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脑瘫儿童和发育正常儿童在步态中手臂运动对质心向前加速度的差异影响

The Differential Effect of Arm Movements during Gait on the Forward Acceleration of the Centre of Mass in Children with Cerebral Palsy and Typically Developing Children.

作者信息

Meyns Pieter, Molenaers Guy, Duysens Jacques, Jonkers Ilse

机构信息

Department of Rehabilitation Medicine, VU University Medical Center, Amsterdam Movement SciencesAmsterdam, Netherlands; Department of Kinesiology, Faculty of Kinesiology and Rehabilitation SciencesKU Leuven, Heverlee, Belgium.

Clinical Motion Analysis Laboratory, CERM, University Hospital Leuven Leuven, Belgium.

出版信息

Front Hum Neurosci. 2017 Mar 1;11:96. doi: 10.3389/fnhum.2017.00096. eCollection 2017.

Abstract

We aimed to study the contribution of upper limb movements to propulsion during walking in typically developing (TD) children ( = 5) and children with hemiplegic and diplegic cerebral palsy (CP; = 5 and = 4, respectively). Using integrated three-dimensional motion capture data and a scaled generic musculoskeletal model that included upper limbs, we generated torque driven simulations of gait in OpenSim. Induced acceleration analyses were then used to determine the contributions of the individual actuators located at the relevant degrees of freedoms of the upper and lower limb joints to the forward acceleration of the COM at each time point of the gait simulation. The mean values of the contribution of the actuators of upper limbs, lower limbs, and gravity in different phases of the gait cycle were compared between the three groups. The results indicated a limited contribution of the upper limb actuators to COM forward acceleration compared to the contribution of lower limbs and gravity, in the three groups. In diplegic CP, the contribution of the upper limbs seemed larger compared to TD during the preswing and swing phases of gait. In hemiplegic CP, the unaffected arm seemed to contribute more to COM deceleration during (pre)swing, while the affected side contributed to COM acceleration. These findings suggest that in the presence of lower limb dysfunction, the contribution of the upper limbs to forward propulsion is altered, although they remain negligible compared to the lower limbs and gravity.

摘要

我们旨在研究在正常发育(TD)儿童(n = 5)以及偏瘫和双瘫型脑瘫(CP)儿童(分别为n = 5和n = 4)行走过程中上肢运动对推进力的贡献。利用集成的三维运动捕捉数据和一个包含上肢的缩放通用肌肉骨骼模型,我们在OpenSim中生成了步态的扭矩驱动模拟。然后使用诱导加速度分析来确定位于上肢和下肢关节相关自由度处的各个致动器在步态模拟的每个时间点对质心(COM)向前加速度的贡献。比较了三组在步态周期不同阶段上肢、下肢和重力致动器贡献的平均值。结果表明,在三组中,与下肢和重力的贡献相比,上肢致动器对COM向前加速度的贡献有限。在双瘫型CP中,与TD相比,上肢在步态的摆动前期和摆动期的贡献似乎更大。在偏瘫型CP中,未受影响的手臂在(前)摆动期似乎对COM减速贡献更大,而受影响侧则对COM加速有贡献。这些发现表明,在存在下肢功能障碍的情况下,上肢对向前推进的贡献会发生改变,尽管与下肢和重力相比,其贡献仍然可以忽略不计。

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