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[纤维体积、材料特性及髓核面积对椎间盘力学行为的影响]

[Effect of fiber volume and material property and nucleus pulposus area on intervertebral disc mechanical behavior].

作者信息

Dong Ruichun, Liu Zhong, Guo Yunqiang, An Yukun, Shi Zhou, Shi Ming

机构信息

School of Mechanical Engineering, Shandong University of Technology, Zibo, Shandong 255000, P. R. China.

Spinal Surgery and Oncology Department, Zibo Central Hospital, Zibo, Shandong 255000, P. R. China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2024 Feb 25;41(1):144-151. doi: 10.7507/1001-5515.202305001.

DOI:10.7507/1001-5515.202305001
PMID:38403615
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10894742/
Abstract

The material properties and volume proportion of the fibers as well as the cross-sectional area proportion of nucleus pulposus vary greatly in different studies. The effect of these factors on the mechanical behavior of intervertebral discs (IVDs) are uncertain. The IVDs finite element models with different parameters were created to investigate the pressure, height, rotation, stress, and strain of the IVDs under loads: pure compression, rotation after compression or axial moment after compression. The results showed that the material properties of fibers had great impact on the mechanical behavior of IVDs, especially on the rotation angle. When the fiber volume ratio was small, its changes had a significant impact on the rotation angle of the IVDs. The area proportions of nucleus pulposus had relatively little effect on the mechanical behavior of IVDs. The IVDs rotation should be observed when validating the model. By adjusting the elastic modulus or volume ratio of fibers within a reasonable range, a model that could simulate the mechanical behavior of normal IVDs could be obtained. It was reasonable to make the area proportion of nucleus pulposus within 25%-50% for the IVDs finite element model. This study provides guidance and reference for finite element modeling of the IVDs and the investigation of the IVDs degeneration mechanism.

摘要

在不同研究中,纤维的材料特性、体积比例以及髓核的横截面积比例差异很大。这些因素对椎间盘(IVD)力学行为的影响尚不确定。创建了具有不同参数的IVD有限元模型,以研究IVD在纯压缩、压缩后旋转或压缩后轴向力矩等载荷作用下的压力、高度、旋转、应力和应变。结果表明,纤维的材料特性对IVD的力学行为有很大影响,尤其是对旋转角度。当纤维体积比小时,其变化对IVD的旋转角度有显著影响。髓核的面积比例对IVD的力学行为影响相对较小。在验证模型时应观察IVD的旋转情况。通过在合理范围内调整纤维的弹性模量或体积比,可以得到能够模拟正常IVD力学行为的模型。对于IVD有限元模型,使髓核面积比例在25% - 50%是合理的。本研究为IVD的有限元建模及IVD退变机制的研究提供了指导和参考。

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本文引用的文献

1
Mechanical Function of the Nucleus Pulposus of the Intervertebral Disc Under High Rates of Loading.椎间盘核在高加载速率下的力学功能。
Spine (Phila Pa 1976). 2019 Aug 1;44(15):1035-1041. doi: 10.1097/BRS.0000000000003092.
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Relative Nucleus Pulposus Area and Position Alter Disk Joint Mechanics.
J Biomech Eng. 2019 May 1;141(5). doi: 10.1115/1.4043029.
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Finite element analysis of the influence of three-joint spinal complex on the change of the intervertebral disc bulge and height.三关节复合体对椎间盘膨出和高度变化影响的有限元分析。
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Human body modeling method to simulate the biodynamic characteristics of spine in vivo with different sitting postures.用于模拟不同坐姿下脊柱体内生物动力学特性的人体建模方法。
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Impact of material and morphological parameters on the mechanical response of the lumbar spine - A finite element sensitivity study.材料和形态学参数对腰椎力学响应的影响——一项有限元敏感性研究。
J Biomech. 2017 Feb 28;53:185-190. doi: 10.1016/j.jbiomech.2016.12.014. Epub 2016 Dec 16.
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Material properties of bovine intervertebral discs across strain rates.牛椎间盘在不同应变率下的材料特性。
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10
Inter-lamellar shear resistance confers compressive stiffness in the intervertebral disc: An image-based modelling study on the bovine caudal disc.层间剪切阻力赋予椎间盘抗压刚度:一项基于图像的牛尾椎间盘建模研究。
J Biomech. 2015 Dec 16;48(16):4303-8. doi: 10.1016/j.jbiomech.2015.10.041. Epub 2015 Nov 3.