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Gravity-induced coronal plane joint moments in adolescent idiopathic scoliosis

机译:重力诱发的青少年特发性脊柱侧凸冠状面关节力矩

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摘要

BackgroundAdolescent Idiopathic Scoliosis is the most common type of spinal deformity, and whilst the isk of progression appears to be biomechanically mediated (larger deformities are more likely to progress), the detailed biomechanical mechanisms driving progression are not well understood. Gravitational forces in the upright position are the primary sustained loads experienced by the spine. In scoliosis they are asymmetrical, generating moments about the spinal joints which may promote asymmetrical growth and deformity progression. Using 3D imaging modalities to estimate segmental torso masses allows the gravitational loading on the scoliotic spine to be determined. The resulting distribution of joint moments aids understanding of the mechanics of scoliosis progression.
机译:背景青少年特发性脊柱侧弯是脊柱畸形最常见的类型,尽管进展的障碍似乎是由生物力学介导的(较大的畸形更可能进展),但驱动进展的详细生物力学机制尚未得到很好的理解。处于垂直位置的重力是脊柱承受的主要持续载荷。在脊柱侧弯中,它们是不对称的,在脊柱关节周围产生力矩,这可能会促进不对称生长和畸形发展。使用3D成像模态估算躯干分段质量,可以确定脊柱侧弯脊柱上的重力负荷。关节力矩的最终分布有助于理解脊柱侧弯进展的机理。

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