首页> 外文会议>ASME summer bioengineering conference;SBC2011 >DEVELOPMENT OF A FINITE ELEMENT LUMBAR SEGMENT MODEL FOR SIMULATION OF COUPLED LOADING CONDITIONS VALIDATED WITH IN VITRO EXPERIMENTAL STUDIES
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DEVELOPMENT OF A FINITE ELEMENT LUMBAR SEGMENT MODEL FOR SIMULATION OF COUPLED LOADING CONDITIONS VALIDATED WITH IN VITRO EXPERIMENTAL STUDIES

机译:有限元腰椎段模型的建立,用于模拟体外试验研究验证的耦合载荷条件

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The traditional approach for evaluating the biomechanics of the spine, both experimentally and computationally, is through a series of planar loading scenarios that are reduced to sagittal (flexion/extension), frontal (lateral bending), and transverse (axial) planes of movement [1]. However, coupled movements occur through daily living activities that place further demands on a spinal device beyond simple planar movements. The objective of this study was to investigate the in vitro biomechanics of the L4-L5 lumbar motion segment unit (MSU) under the coupled loading conditions, and to use the experimental data to validate a high-fidelity non-parametric finite element (FE) model of the L4-L5 lumbar MSU.
机译:评估脊柱生物力学的传统方法,无论是在实验上还是在计算上,都是通过一系列平面载荷方案来进行的,这些方案被简化为矢状(弯曲/伸展),前(侧向弯曲)和横向(轴向)运动平面[ 1]。但是,耦合运动是通过日常生活活动发生的,除了简单的平面运动之外,这对脊柱器械提出了更多要求。这项研究的目的是研究耦合负荷条件下L4-L5腰椎运动节段单元(MSU)的体外生物力学,并使用实验数据验证高保真非参数有限元(FE) L4-L5腰部MSU的模型。

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