首页> 外文期刊>Journal of Biomechanics >Damage accumulation location under cyclic loading in the lumbar disc shifts from inner annulus lamellae to peripheral annulus with increasing disc degeneration
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Damage accumulation location under cyclic loading in the lumbar disc shifts from inner annulus lamellae to peripheral annulus with increasing disc degeneration

机译:随着椎间盘退变的增加,腰椎间盘的周期性载荷下损伤累积位置从内瓣环向周围瓣环转移

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摘要

It is difficult to study the breakdown of lumbar disc tissue over several years of exposure to bending and lifting by experimental methods. In our earlier published study we have shown how a finite element model of a healthy lumbar motion segment was used to predict the damage accumulation location and number of cyclic to failure under different loading conditions. The aim of the current study was to extend the continuum damage mechanics formulation to the degenerated discs and investigate the initiation and progression of mechanical damage. Healthy disc model was modified to represent degenerative discs (Thompson grade III and IV) by incorporating both geometrical and biochemical changes due to degeneration. Analyses predicted decrease in the number of cycles to failure with increasing severity of disc degeneration. The study showed that the damage initiated at the posterior inner annulus adjacent to the endplates and propagated outwards towards its periphery in healthy and grade III degenerated discs. The damage accumulated preferentially in the posterior region of the annulus. However in grade IV degenerated disc damage initiated at the posterior outer periphery of the annulus and propagated circumferentially. The finite element model predictions were consistent with the infrequent occurrence of rim lesions at early age but a much higher incidence in severely degenerated discs.
机译:很难通过实验方法研究经过数年弯曲和举起的腰椎间盘组织的破裂。在我们较早发表的研究中,我们显示了健康腰椎运动段的有限元模型如何用于预测损伤累积位置和在不同载荷条件下失效的循环数。当前研究的目的是将连续损伤力学公式扩展到退化的椎间盘,并研究机械损伤的发生和发展。通过合并由于退化引起的几何变化和生化变化,修改了健康椎间盘模型以代表变性椎间盘(汤普森III级和IV级)。分析预测,随着椎间盘退变的严重程度增加,失败的周期数将减少。研究表明,在健康的和Ⅲ级退化椎间盘中,损伤始于邻近终板的后内环,并向外传播至其外围。损伤优先聚集在环的后部区域。然而,在Ⅳ级退化性椎间盘损伤始于瓣环的后外围,并沿周向传播。有限元模型的预测与早期发生轮缘损伤的频率不高相一致,但严重退化的椎间盘的发生率要高得多。

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