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骨质疏松症患者腰椎生理负荷分析:有限元研究。

Analysis of the physiological load on lumbar vertebrae in patients with osteoporosis: a finite-element study.

机构信息

Precision Mechanical Process and Control R&D Group, Korea Institute of Industrial Technology, Jinju, 52845, Korea.

Department of Rehabilitation Medicine, Kyungpook National University Hospital, Daegu, 41944, Korea.

出版信息

Sci Rep. 2022 Jun 29;12(1):11001. doi: 10.1038/s41598-022-15241-3.

Abstract

This study aims to investigate the difference in physiological loading on the spine in three different motions (flexion-extension, lateral bending, and axial rotation) between osteoporotic and normal spines, using finite element modelling. A three-dimensional finite element (FE) model centered on the lumbar spine was constructed. We applied two different material properties of osteoporotic and normal spines. For the FE analysis, three loading conditions (flexion-extension, lateral bending, and axial rotation) were applied. The von Mises stress was higher on the nucleus pulposus at all vertebral levels in all movements, in the osteoporosis group than in the normal group. On the annulus fibrosus, the von Mises stress increased at the level of L3-L4, L4-L5, and L5-S in the flexion-extension group and at L4-L5 and L5-S levels in the lateral bending group. The values of two motions, flexion-extension and lateral bending, increased in the L4 and L5 cortical bones. In axial rotation, the von Mises stress increased at the level of L5 of cortical bone. Additionally, the von Mises stress increased in the lower endplate of L5-S and L4-L5 in all movements, especially lateral bending. Even in the group with no increase, there was a part that received increased von Mises stress locally for each element in the three-dimensional reconstructed view of the pressure distribution in color. The von Mises stress on the lumbar region in the three loading conditions, was greater in most components of osteoporotic vertebrae than in normal vertebrae and the value was highest in the nucleus pulposus. Considering the increase in the measured von Mises stress and the local increase in the pressure distribution, we believe that these results can contribute to explaining discogenic pain and degeneration.

摘要

本研究旨在通过有限元建模,研究三种不同运动(屈伸、侧屈和轴向旋转)下骨质疏松和正常脊柱的脊柱生理负荷差异。建立了以腰椎为中心的三维有限元(FE)模型。我们应用了骨质疏松和正常脊柱的两种不同材料特性。对于 FE 分析,应用了三种加载条件(屈伸、侧屈和轴向旋转)。在所有运动中,骨质疏松组各节段核髓内的 von Mises 应力均高于正常组。在纤维环上,屈伸组在 L3-L4、L4-L5 和 L5-S 水平以及侧屈组在 L4-L5 和 L5-S 水平上的 von Mises 应力增加。两个运动,屈伸和侧屈,在 L4 和 L5 皮质骨的数值增加。在轴向旋转中,皮质骨的 L5 水平上的 von Mises 应力增加。此外,在所有运动中,特别是在侧屈运动中,L5-S 和 L4-L5 的下终板的 von Mises 应力增加。即使在没有增加的组中,在压力分布的三维重建视图中,每个元素的 von Mises 应力也会局部增加。在三种加载条件下,腰椎区域的 von Mises 应力在大多数骨质疏松椎体的组件中大于正常椎体,并且在核髓内的数值最高。考虑到测量的 von Mises 应力增加和压力分布的局部增加,我们认为这些结果有助于解释椎间盘源性疼痛和退变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55bd/9243026/86e95fd8f7ec/41598_2022_15241_Fig1_HTML.jpg

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