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小关节参数对腰椎相应节段生物力学的影响:一种新的可视化方法。

The biomechanical influence of facet joint parameters on corresponding segment in the lumbar spine: a new visualization method.

机构信息

Department of Orthopaedics, First Affiliated Hospital of Dalian Medical University, No. 5 Longbin Road, Dalian 116600,China; Key Laboratory of Molecular Mechanism for Repair and Remodeling of Orthopaedic Diseases, No. 5 Longbin Road, Dalian 116600,China.

School of Mechanical Engineering, Dalian University of Technology, No.2 linggong Road, Dalian 116024,China.

出版信息

Spine J. 2021 Dec;21(12):2112-2121. doi: 10.1016/j.spinee.2021.05.024. Epub 2021 May 30.

Abstract

BACKGROUND CONTEXT

Facet joints have been discussed as influential factors in the development of lumbar degeneration, which includes disc herniation and degenerative lumbar spondylolisthesis. Facet orientation (FO) and facet tropism (FT) are two important structural parameters of the lumbar facet joints. Many previous studies have focused on single parameter analysis of the lumbar spine. Owing to the correlation between independent variables, single-factor analysis cannot reflect the interaction between variables; however, there has been no corresponding biomechanical method developed to address this problem.

PURPOSE

To investigate the complex biomechanical influences on the lumbar spine when vertebral FO and FT are varied using finite element analysis (FEA) and contour maps visualization, and analyze the biomechanical role of facet joint structural parameters in the process of lumbar degenerative diseases.

STUDY DESIGN

A biomechanical modelling, analysis, and verification study was performed.

METHODS

A three-dimensional non-linear FEA model of 3 denucleated intervertebral discs (L2-3, L3-4, L4-5) with adjacent vertebral bodies (L2-L5) was created. Previously performed in vitro experiments provided experimental data for the range of motion in each load direction that was used for calibration. For 12 lumbar models, different facet joint angles relative to the sagittal plane at both L3-4 facet joints were simulated for 35°≤FO≤50° and 0°≤FT≤15°. By modifying different values of FO and FT, FEA simulation of different lumbar spine models was performed. Contour maps were used to visualize the FO- and FT-relevant data.

RESULTS

Under flexion, extension, and torsion moments, facet joint contact force and intradiscal stress increased with increasing FT. In the condition where FT remained 0° and increasing FO values, facet joint contact force and intradiscal stress remained low with no apparent increasing or decreasing trend when the model was under flexion, extension, and torsion moments. In the condition where FO and the FT values were varied at the same time, the highest force and stress regions in the contour maps were observed when all three types of moments were applied. Stress distributions of the L3-4 disc with different FT and FO values showed disc stress increased significantly with increases of FT and was concentrated on the ipsilateral region of the facet joint with the more sagittal orientation.

CONCLUSIONS

The combination of FO and FT has an important impact on the corresponding disc and facet joints, but FT played a more significant role. Moreover, disc stress was concentrated on the ipsilateral region of facet joint with greater sagittal orientation when FT existed. FT with high sagittal orientation may increase risk of recurrent LDH due to increase ipsilateral disc pressure.

CLINICAL SIGNIFICANCE

These biomechanical findings may help clinicians to understand the prognosis of some lumbar degenerative conditions.

摘要

背景

关节突关节被认为是腰椎退变发展的影响因素之一,包括椎间盘突出和退行性腰椎滑脱。关节突方位(FO)和关节突倾斜(FT)是腰椎关节突关节的两个重要结构参数。许多先前的研究都集中在对腰椎脊柱的单一参数分析上。由于自变量之间的相关性,单因素分析不能反映变量之间的相互作用;然而,尚未开发出相应的生物力学方法来解决这个问题。

目的

通过有限元分析(FEA)和等高线图可视化来研究腰椎 FO 和 FT 变化时对腰椎的复杂生物力学影响,并分析关节突结构参数在腰椎退行性疾病过程中的生物力学作用。

研究设计

生物力学建模、分析和验证研究。

方法

创建了包含 3 个去核椎间盘(L2-3、L3-4、L4-5)和相邻椎体(L2-L5)的三维非线性 FEA 模型。以前进行的体外实验提供了每个加载方向运动范围的实验数据,用于校准。对于 12 个腰椎模型,在 L3-4 关节突关节的矢状面模拟了 35°≤FO≤50°和 0°≤FT≤15°的不同关节突关节角度。通过修改 FO 和 FT 的不同值,对不同的腰椎脊柱模型进行 FEA 模拟。等高线图用于可视化 FO 和 FT 相关数据。

结果

在屈曲、伸展和扭转力矩下,关节突关节接触力和椎间盘内压力随着 FT 的增加而增加。在 FT 保持 0°且增加 FO 值的情况下,当模型受到屈曲、伸展和扭转力矩作用时,关节突关节接触力和椎间盘内压力保持在较低水平,没有明显的增加或减少趋势。在 FO 和 FT 值同时变化的情况下,当施加所有三种类型的力矩时,等高线图中观察到的最高力和应力区域。具有不同 FT 和 FO 值的 L3-4 椎间盘的应力分布表明,椎间盘应力随着 FT 的增加而显著增加,并且集中在关节突关节的同侧区域,该区域具有更大的矢状方位。

结论

FO 和 FT 的组合对相应的椎间盘和关节突关节有重要影响,但 FT 起更重要的作用。此外,当 FT 存在时,椎间盘应力集中在具有更大矢状方位的关节突关节的同侧区域。具有高矢状方位的 FT 可能会由于同侧椎间盘压力增加而增加复发性 LDH 的风险。

临床意义

这些生物力学发现可能有助于临床医生了解一些腰椎退行性疾病的预后。

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