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椎间盘严重退变的结构描述,用于通过应力轮廓测量法获得的实验结果进行计算解释。

A structural description for severe degeneration of intervertebral discs to computationally interpret experimental results obtained by stress profilometry.

作者信息

Nazari Ali Reza

机构信息

Technical & Vocational University, Tehran, Iran.

出版信息

Eur Spine J. 2025 Jul 3. doi: 10.1007/s00586-025-09108-0.

Abstract

In this paper, reduction of load carrying capacity in severely degenerated intervertebral discs (IVDs) was attributed to structural damage to the tissues involved with IVDs. Damage to the collagen fibers was blamed for degradation of the annulus fibrosus (AF) and dehydration of nucleus pulposus (NP) was adopted for losing its incompressibility and unstable migration in a degenerated condition. The change of the mechanical properties in the tissues due to degeneration was referred to various experimental reports that were used to simulate a computational model from a lumbar vertebral segment for a patient with degenerated IVDs. In the first phase of the study, the most accurate mechanical properties, suggested for the tissues by the various references, were selected for simulation of the stress diagrams, obtained by stress profilometry. Then in the second phase, reliability of some damage scenarios according to the pathophysiological descriptions for the tissues in a severely degenerated condition was examined. The results of the model showed that the incompressible response of NP which was taking 79% of a compression load for a normal condition of IVD, took just 40% of the load in a degenerated condition. The models postulated the residual stiffness of a severely degenerated IVD equal to 13% of its original value.

摘要

在本文中,严重退变的椎间盘(IVD)承载能力的降低归因于与IVD相关组织的结构损伤。胶原纤维的损伤被认为是纤维环(AF)退变的原因,而髓核(NP)脱水则被认为是其在退变状态下失去不可压缩性并发生不稳定迁移的原因。退变导致的组织力学性能变化参考了各种实验报告,这些报告被用于为患有退变IVD的患者建立腰椎节段的计算模型。在研究的第一阶段,从各种参考文献中选取了针对组织建议的最准确力学性能,用于模拟通过应力轮廓法获得的应力图。然后在第二阶段,根据严重退变状态下组织的病理生理描述,检验了一些损伤情况的可靠性。模型结果显示,在IVD正常状态下承担79%压缩载荷的NP的不可压缩响应,在退变状态下仅承担40%的载荷。模型假设严重退变的IVD的残余刚度等于其原始值的13%。

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