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A biomechanical analysis of upper extremity kinetics in children with cerebral palsy using anterior and posterior walkers.

机译:使用前行和后行助步器对脑瘫患儿上肢动力学进行生物力学分析。

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摘要

Upper extremity (UE) joint kinetics during aided ambulation is an area of research that is not well characterized in the current literature. Biped UE joints are not anatomically designed to be weight bearing, therefore it is important to quantify UE kinetics during assisted gait. This will help to better understand the biomechanical implications of UE weight bearing, and enable physicians to prescribe more effective methods for treatment and therapy, perhaps minimizing excessive loads and torques. To address this challenge, an UE model that incorporates both kinematics and kinetics has been developed for use with walkers instrumented with load cells. In this study, the UE joint kinetics are calculated for 10 children with cerebral palsy using both anterior and posterior walkers. Three-dimensional joint reaction forces and moments are fully characterized for the wrist, elbow, and shoulder (glenohumeral) joints for both walker types. Statistical analysis methods are used to quantify the differences in forces or moments between the two walker types. Comparisons showed no significant differences in kinetic joint parameters between walker types. Results from a power analysis of the current data are provided which may be useful for planning longer term clinical studies. If risk factors for UE joint pathology can be identified early, perhaps a change in gait training routine, walker prescription, or walker design could prevent further harm.
机译:辅助行走过程中的上肢(UE)关节动力学是当前文献中尚未很好描述的研究领域。两足动物的UE关节在解剖学上不是设计为承重的,因此在辅助步态期间量化UE动力学很重要。这将有助于更好地了解UE负重的生物力学含义,并使医生能够开出更有效的治疗方法,也许可以最大程度地减少过多的负荷和扭矩。为了应对这一挑战,已经开发了一种结合了运动学和动力学的UE模型,可用于装有测力传感器的助行器。在这项研究中,使用前和后助行器计算了10名脑瘫患儿的UE关节动力学。两种助行器的腕部,肘部和肩部(盂肱)关节均具有三维关节反作用力和力矩。统计分析方法用于量化两种助行器之间的力或力矩差异。比较表明,助行器类型之间的动力学关节参数没有显着差异。提供了对当前数据进行功率分析的结果,这些结果可能有助于规划长期临床研究。如果可以及早发现UE关节病理的危险因素,则步态训练常规,助行器处方或助行器设计的改变可能会阻止进一步的伤害。

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