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首页> 外文期刊>European Spine Journal >The mechanical response of the lumbar spine to different combinations of disc degenerative changes investigated using randomized poroelastic finite element models
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The mechanical response of the lumbar spine to different combinations of disc degenerative changes investigated using randomized poroelastic finite element models

机译:使用随机多孔弹性有限元模型研究腰椎对椎间盘退变变化不同组合的机械反应

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摘要

Degeneration of the intervertebral disc is related to progressive changes in the disc tissue composition and morphology, such as water loss, disc height loss, endplate calcification, osteophytosis. These changes may be present separately or, more frequently, in various combinations. This work is aimed to the biomechanical investigation of a wide range of clinical scenarios of disc degeneration, in which the most common degenerative changes are present in various combinations. A poroelastic non-linear finite element model of the healthy L4–L5 human spine segment was employed and randomly scaled to represent ten spine segments from different individuals. Six different degenerative characteristics (water loss in the nucleus pulposus and annulus fibrosus; calcification and thickness reduction of endplate cartilage; disc height loss; osteophyte formation; diffuse sclerosis) were modeled in 30 randomly generated models, 10 for each overall degree of degeneration (mild, moderate, severe). For each model, a daily loading cycle including 8 h of rest, 16 h in the standing position with superimposed two flexion–extension motion cycles was simulated. A tendency to an increase of stiffness with progressing overall degeneration was observed, in compression, flexion and extension. Hence, instability for mild degeneration was not predicted. Facet forces and fluid loss decreased with disc degeneration. Nucleus, annulus and endplate degeneration, disc height loss, osteophytosis and diffuse sclerosis all induced a statistically significant decrease in the total daily disc height variation, facet force and flexibility in flexion–extension. Therefore, grading systems for disc degeneration should include all the degenerative changes considered in this work, since all of them had a significant influence on the spinal biomechanics.
机译:椎间盘退变与椎间盘组织组成和形态的进行性变化有关,例如失水,椎间盘高度下降,终板钙化,骨赘。这些更改可以单独出现,也可以更频繁地以各种组合出现。这项工作旨在对各种椎间盘退变的临床情况进行生物力学研究,其中最常见的退行性改变以各种组合形式出现。使用健康的L4–L5人类脊柱节的多孔弹性非线性有限元模型,并随机缩放以代表来自不同个体的十个脊柱节段。在30个随机生成的模型中建模了6种不同的退化特征(髓核和纤维环失水;终板软骨钙化和厚度减少;椎间盘高度损失;骨赘形成;弥散性硬化),每个整体退化程度为10个(轻度) ,中度,严重)。对于每个模型,模拟了每天的负荷循环,包括8小时的休息,站立状态下的16小时以及两个屈伸运动周期的叠加。在压缩,弯曲和伸展中,观察到刚度随着整体变性的增加而增加的趋势。因此,没有预测到轻度变性的不稳定性。随着椎间盘退变,小平面力和液体损失减少。核,环和终板变性,椎间盘高度损失,骨赘和弥漫性硬化症均导致每日总椎间盘高度变化,小平面力和屈伸灵活度出现统计学上的显着下降。因此,椎间盘退变的分级系统应包括这项工作中考虑的所有退变变化,因为它们均对脊椎生物力学产生重大影响。

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