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STEPWISE VALIDATED FINITE ELEMENT MODEL OF THE HUMAN LUMBAR SPINE

机译:逐步验证的人腰椎的有限元模型

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摘要

Understanding the kinematics of the lumbosacral spine and the individual functional spinal units (FSU) is essential in assessing spine mechanics and implant performance. The lumbosacral spine and the FSU are comprised of bones and complex soft tissues such as intervertebral discs (IVD) and ligaments. Prior studies have focused on the behavior of isolated structures, but the contribution of each structure to the overall kinematics of the spine needs to be further understood. In this study, the behavior of various structural conditions was determined by experimentally dissecting each ligament in a stepwise fasion until only the IVD remained, and applying loading conditions to the FSU. The FE model was validated through optimization to match the in vitro load-deflection characteristics and contact mechanics for the various structural configurations.
机译:了解腰骶脊柱的运动学和个体功能脊柱单位(FSU)对于评估脊柱力学和植入性能至关重要。腰骶部和FSU由骨骼和复杂的软组织如椎间盘(IVD)和韧带组成。先前的研究专注于隔离结构的行为,但需要进一步理解每个结构对脊柱的整体运动学的贡献。在这项研究中,通过在逐步漂移中实验将每个韧带进行实验地将每个韧带进行实验疏忽直到仅静止,并将负载条件施加到FSU来确定各种结构条件的行为。通过优化验证FE模型,以匹配各种结构配置的体外载荷偏转特性和接触机械。

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