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3D-Quantitative evaluation of a rigid seating system and dynamic seating system using 3D movement analysis in individuals with dystonic tetraparesis.

机译:使用3D运动分析对患有肌张力障碍性四肢轻瘫的个体进行3D定量评估刚性座椅系统和动态座椅系统。

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摘要

To improve postural stability in individuals with dystonic cerebral palsy, the concept of a dynamic seat has been suggested as a potential solution. An experimental set-up for the acquisition of movement during extensor thrusts while sitting on a seating system was defined and applied on a group of dystonic individuals, to compare a dynamic versus a rigid seat system, using quantitative movement analysis. The seating system in dynamic configuration is able to reduce the extensor thrust experienced by the consumers, as well as to increase range of motion in the anterior-posterior direction, limiting the sliding down of trunk and showing better upper limb smoothness during extensor thrusts. The procedures used in this study appear to provide a useful tool for better understanding how the concept of a dynamic back in a seat system may affect and influence position and stability of individuals with dystonia on the seat system.
机译:为了改善肌张力障碍性脑瘫患者的姿势稳定性,动态座椅的概念已被建议作为一种潜在的解决方案。定义了一种实验装置,用于在坐在座位系统上的伸肌推力过程中获取运动,并将其应用于一组肌张力障碍的个体,以使用定量运动分析来比较动态和刚性座位系统。动态配置的座椅系统能够减少使用者承受的伸肌推力,并增加前后方向的运动范围,限制躯干的滑行,并在伸肌推力时显示出更好的上肢平滑度。本研究中使用的程序似乎为更好地了解座椅系统中动态靠背的概念如何影响和影响患有肌张力障碍的人在座椅系统上的位置和稳定性提供了有用的工具。

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