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A Method to Quantify Multi-Degree-of-Freedom Lower Limb Isometric Joint Torques in Children with Hemiplegia*

机译:一种在偏瘫 * 中的儿童中量化多维自由度下肢等距关节扭矩的方法

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Pediatric hemiplegia, caused by a unilateral brain injury during childhood, can lead to motor deficits such as weakness and abnormal joint torque coupling patterns which may result in a loss of independent joint control. It is hypothesized that these motor impairments are present in the paretic lower extremity, especially at the hip joint where extension may be abnormally coupled with adduction. Previous studies investigating lower extremity isometric joint torques in children with spastic cerebral palsy used tools that limited data collection to one degree of freedom, making it impossible to quantify these coupling patterns. We describe the adaptation of a multi-joint lower extremity isometric torque measurement device to allow for quantification of weakness and abnormal joint torque coupling patterns at the hip in the pediatric population. We also present preliminary data in three children without hemiplegia to highlight how the presence of atypical femoral bony geometry, often observed in childhood hemiplegia, can be accounted for in the Jacobian transformations and affect joint torque measurements at the hip.
机译:由儿童期间单侧脑损伤引起的小儿偏瘫会导致电机缺陷,如弱点和异常的关节扭矩耦合图案,这可能导致独立的关节控制的损失。假设这些电动机损伤存在于垂直下肢中,尤其是在髋关节处,其中延伸可以与内收延伸。以前的研究调查痉挛性脑瘫儿童的下肢等距关节扭矩,这些工具将数据收集有限到一种自由度,使得不可能量化这些耦合模式。我们描述了一种多关节下肢等距扭矩测量装置的适应,以允许在儿科群中的臀部进行弱点和异常关节扭矩耦合图案。在三个孩子没有偏瘫,以彰显我们还提出初步数据如何非典型股骨骨几何形状的存在,在童年常常偏瘫观察到,可以在雅可比变换进行核算,并影响到髋关节扭矩测量。

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