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跟随者预载下腰椎小关节的生物力学响应:一项有限元研究。

Biomechanical response of lumbar facet joints under follower preload: a finite element study.

作者信息

Du Cheng-Fei, Yang Nan, Guo Jun-Chao, Huang Yun-Peng, Zhang Chunqiu

机构信息

Tianjin Key Laboratory for Advanced Mechatronic System Design and Intelligent Control, Tianjin University of Technology, No. 391, Binshui West Road, Xiqing District, 300384, Tianjin, China.

School of Biological Science and Medical Engineering, Key Laboratory for Biomechanics and Mechanobiology of Ministry of Education, Beihang University, 100191, Beijing, China.

出版信息

BMC Musculoskelet Disord. 2016 Mar 15;17:126. doi: 10.1186/s12891-016-0980-4.

Abstract

BACKGROUND

Facet joints play a significant role in providing stability to the spine and they have been associated with low back pain symptoms and other spinal disorders. The influence of a follower load on biomechanics of facet joints is unknown. A comprehensive research on the biomechanical role of facets may provide insight into facet joint instability and degeneration.

METHOD

A nonlinear finite element (FE) model of lumbar spine (L1-S1) was developed and validated to study the biomechanical response of facets, with different values of follower preload (0 N,500 N,800 N,1200 N), under loadings in the three anatomic planes. In this model, special attention was paid to the modeling of facet joints, including cartilage layer. The asymmetry in the biomechanical response of facets was also discussed. A rate of change (ROC) and an average asymmetry factor (AAF) were introduced to explore and evaluate the preload effect on these facet contact parameters and on the asymmetry under different loading conditions.

RESULTS

The biomechanical response of facets changed according to the loading condition. The preload amplified the facet force, contact area and contact pressure in flexion-extension; the same effect was observed on the ipsilateral facet while an opposite effect could be seen on the contralateral facet during lateral bending. For torsion loading, the preload increased contact area, decreased the mean contact pressure, but had almost no effect on facet force. However, all the effects of follower load on facet response became weaker with the increase of preload. The greatest asymmetry of facet response could be found on the ipsilateral side during lateral bending, followed by flexion, bending (contralateral side), extension and torsion. This asymmetry could be amplified by preload in the bending (ipsilateral), torsion loading group, while being reduced in the flexion group.

CONCLUSIONS

An analysis combining patterns of contact pressure distribution, facet load, contact area and contact pressure can provide more insight into the biomechanical role of facets under various moment loadings and follower loads. The effect of asymmetry on facet joint response should be fully considered in biomechanical studies of lumbar spine, especially in post structures subjected to physiological loadings.

摘要

背景

小关节在维持脊柱稳定性方面发挥着重要作用,且与腰痛症状及其他脊柱疾病相关。随动载荷对小关节生物力学的影响尚不清楚。对小关节生物力学作用的全面研究可能有助于深入了解小关节不稳和退变。

方法

建立并验证了腰椎(L1-S1)的非线性有限元(FE)模型,以研究在三个解剖平面加载下,不同随动预载值(0 N、500 N、800 N、1200 N)时小关节的生物力学响应。在该模型中,特别关注了小关节的建模,包括软骨层。还讨论了小关节生物力学响应的不对称性。引入变化率(ROC)和平均不对称因子(AAF)来探索和评估预载对这些小关节接触参数以及不同加载条件下不对称性的影响。

结果

小关节的生物力学响应随加载条件而变化。预载在屈伸时会增大小关节力、接触面积和接触压力;在侧屈时,同侧小关节有相同效果,而对侧小关节则有相反效果。对于扭转加载,预载增加了接触面积,降低了平均接触压力,但对小关节力几乎没有影响。然而,随动载荷对小关节响应的所有影响都随着预载的增加而减弱。小关节响应的最大不对称性出现在侧屈时的同侧,其次是屈伸、侧屈(对侧)、伸展和扭转。这种不对称性在侧屈(同侧)、扭转加载组中会因预载而放大,而在屈伸组中会减小。

结论

结合接触压力分布模式、小关节载荷、接触面积和接触压力进行分析,可以更深入地了解小关节在各种力矩载荷和随动载荷下的生物力学作用。在腰椎生物力学研究中,尤其是在承受生理载荷的后部结构中,应充分考虑不对称性对小关节响应的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/675d/4791937/5579ee7dd392/12891_2016_980_Fig1_HTML.jpg

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