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A computational spinal motion segment model incorporating a matrix composition-based model of the intervertebral disc

机译:包含基于矩阵组成的椎间盘模型的计算脊柱运动段模型

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摘要

The extracellular matrix of the intervertebral disc is subjected to changes with age and degeneration, affecting the biomechanical behaviour of the spine. In this study, a finite element model of a generic spinal motion segment that links spinal biomechanics and intervertebral disc biochemical composition was developed. The local mechanical properties of the tissue were described by the local matrix composition, i.e. fixed charge density, amount of water and collagen and their organisation. The constitutive properties of the biochemical constituents were determined by fitting numerical responses to experimental measurements derived from literature. This general multi-scale model of the disc provides the possibility to evaluate the relation between local disc biochemical composition and spinal biomechanics. (C) 2015 Elsevier Ltd. All rights reserved.
机译:椎间盘的细胞外基质会随着年龄和退变而发生变化,从而影响脊柱的生物力学行为。在这项研究中,建立了一个连接脊柱生物力学和椎间盘生化成分的通用脊柱运动节段的有限元模型。组织的局部力学性能由局部基质组成描述,即固定电荷密度、水和胶原蛋白的量及其组织。通过将数值响应与文献中的实验测量值进行拟合,确定了生化成分的本构特性。这种椎间盘的多尺度通用模型为评估局部椎间盘生化成分与脊柱生物力学之间的关系提供了可能性。(C) 2015爱思唯尔有限公司版权所有。

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