首页> 外文期刊>Journal of Biomechanics >Inclusion of regional poroelastic material properties better predicts biomechanical behavior of lumbar discs subjected to dynamic loading.
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Inclusion of regional poroelastic material properties better predicts biomechanical behavior of lumbar discs subjected to dynamic loading.

机译:包含区域多孔弹性材料的特性可以更好地预测承受动态载荷的腰椎间盘的生物力学行为。

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摘要

Understanding the relationship between repetitive lifting and the breakdown of disc tissue over several years of exposure is difficult to study in vivo and in vitro. The aim of this investigation was to develop a three-dimensional poroelastic finite element model of a lumbar motion segment that reflects the biological properties and behaviors of in vivo disc tissues including swelling pressure due to the proteoglycans and strain-dependent permeability and porosity. It was hypothesized that when modeling the annulus, prescribing tissue specific material properties will not be adequate for studying the in vivo loading and unloading behavior of the disc. Rather, regional variations of these properties, which are known to exist within the annulus, must also be included. Finite element predictions were compared to in vivo measurements published by Tyrrell et al. (1985) of percent change in total stature for two loading protocols, short-term creep loading and standing recovery and short-term cyclic loading with standing recovery. The model in which the regional variations of material properties in the annulus had been included provided an overall better prediction of the in vivo behavior as compared to the model in which the annulus properties were assumed to be homogenous. This model will now be used to study the relationship between repetitive lifting and disc degeneration.
机译:在体内和体外研究了解反复接触和反复暴露几年后椎间盘组织破裂之间的关系非常困难。这项研究的目的是开发一个腰部运动节段的三维多孔弹性有限元模型,该模型可反映体内椎间盘组织的生物学特性和行为,包括由于蛋白聚糖引起的肿胀压力以及应变依赖性渗透性和孔隙度。假设在对环进行建模时,规定组织特定的材料特性不足以研究椎间盘的体内加载和卸载行为。相反,还必须包括已知存在于环形空间内的这些属性的区域变化。将有限元预测与Tyrrell等人发表的体内测量结果进行了比较。 (1985年)的两个加载方案,短期蠕变加载和站立恢复以及短期循环加载与站立恢复的总身高变化百分比。与假定环面特性是同质的模型相比,其中包括环面材料特性的区域变化的模型提供了对体内行为的整体更好的预测。该模型现在将用于研究重复提起和椎间盘退变之间的关系。

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