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Computer modeling of gait abnormalities in cerebral palsy: application to treatment planning

机译:脑瘫步态异常的计算机建模:在治疗计划中的应用

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The treatment of gait abnormalities in persons with cerebral palsy is challenging. Theoretically, gait abnormalities can be diminished by decreasing the muscle forces that disrupt normal movement (e.g. via muscle-tendon lengthenings or tone-altering medications) and/or increasing the muscle and ground reaction forces that have the potential to improve movement (e.g. via strengthening exercises, orthoses, or derotational osteotomies). However, different patients exhibit varying degrees of neurologic impairment, spasticity, weakness, and bone deformity, suggesting that gait deviations arise from a variety of sources, each of which requires a different treatment. Treatment planning is further complicated because there is currently no scientific basis for determining how patients' neuromusculoskeletal impairments contribute to abnormal movement. This paper describes how biomechanical models can be used, in combination with experimental data, to enhance our understanding of gait abnormalities and to provide a theoretical basis for planning treatments. Two examples are presented, and suggestions for future work are discussed.
机译:治疗脑瘫患者的步态异常具有挑战性。从理论上讲,步态异常可以通过减少破坏正常运动的肌肉力(例如,通过肌腱拉长或音调改变药物)和/或增加可能改善运动的肌肉和地面反作用力(例如,通过增强力量)来减轻运动,矫形器或扭转性截骨术)。但是,不同的患者表现出不同程度的神经系统损害,痉挛,虚弱和骨骼畸形,这表明步态偏离是由多种来源引起的,每种来源都需要不同的治疗方法。由于目前尚无科学依据来确定患者的神经肌肉骨骼损伤如何导致异常运动,因此治疗计划变得更加复杂。本文介绍了如何将生物力学模型与实验数据结合使用,以增强我们对步态异常的理解并为计划治疗提供理论依据。给出了两个示例,并讨论了对未来工作的建议。

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