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骨质疏松患者上下相邻椎体骨水泥分布对夹心椎影响的静态研究及数值模拟:有限元分析

Static study and numerical simulation of the influence of cement distribution in the upper and lower adjacent vertebrae on sandwich vertebrae in osteoporotic patients: Finite element analysis.

作者信息

Huang Shaolong, Wu Xue, Zhou Chengqiang, Zhang Xu, Tang Zhongjian, Qi Xiangyu, Zhao Shuai

机构信息

Department of Orthopedics The Affiliated Hospital of Xuzhou Medical University Xuzhou Jiangsu China.

Graduate school of Xuzhou Medical University Xuzhou Jiangsu China.

出版信息

JOR Spine. 2024 Jun 21;7(2):e1343. doi: 10.1002/jsp2.1343. eCollection 2024 Jun.

Abstract

OBJECTIVE

We analyzed the influence of the location of the upper and lower cement on the sandwich vertebrae (SV) by computer finite element analysis.

MATERIALS AND METHODS

A finite element model of the spinal segment of T11-L1 was constructed and 6 mL of cement was built into T11 and L1 simultaneously. According to the various distributions of bone cement at T11 and L1, the following four groups were formed: (i) Group B-B: bilateral bone cement reinforcement in both T11 and L1 vertebral bodies; (ii) Group L-B: left unilateral reinforcement in T11 and bilateral reinforcement in L1; (iii) Group L-R: unilateral cement reinforcement in both T11 and L1 (cross); (iv) Group L-L: unilateral cement reinforcement in both T11 and L1 (ipsilateral side). The maximum von Mises stress (VMS) and maximum displacement of the SV and intervertebral discs were compared and analyzed.

RESULTS

The maximum VMS of T12 was in the order of size: group B-B < L-B < L-R < L-L. Group B-B showed the lowest maximum VMS values for T12: 19.13, 18.86, 25.17, 25.01, 19.24, and 20.08 MPa in six directions of load flexion, extension, left and right lateral bending, and left and right rotation, respectively, while group L-L was the largest VMS in each group, with the maximum VMS in six directions of 21.55, 21.54, 30.17, 28.33, 19.88, and 25.27 MPa, respectively.

CONCLUSION

Compared with the uneven distribution of bone cement in the upper and lower adjacent vertebrae (ULAV), the uniform distribution of bone cement in the ULAV reduced and uniformed the stress load on the SV and intervertebral disc. Theoretically, it can lead to the lowest incidence of sandwich vertebral fracture and the slowest rate of intervertebral disc degeneration.

摘要

目的

通过计算机有限元分析,研究上下椎体骨水泥位置对夹心椎(SV)的影响。

材料与方法

构建T11-L1节段脊柱的有限元模型,同时在T11和L1注入6 mL骨水泥。根据T11和L1椎体骨水泥的不同分布情况,分为以下四组:(i)B-B组:T11和L1椎体双侧骨水泥强化;(ii)L-B组:T11左侧单侧强化,L1双侧强化;(iii)L-R组:T11和L1均为单侧骨水泥强化(交叉);(iv)L-L组:T11和L1均为单侧骨水泥强化(同侧)。比较并分析SV和椎间盘的最大von Mises应力(VMS)及最大位移。

结果

T12的最大VMS大小顺序为:B-B组<L-B组<L-R组<L-L组。B-B组T12的最大VMS值在六个加载方向(前屈、后伸、左右侧弯、左右旋转)分别为19.13、18.86、25.17、25.01、19.24和20.08 MPa,为各组中最低,而L-L组在各组中VMS最大,六个方向的最大VMS分别为分别为21.55、21.54、30.17、28.33、19.88和25.27 MPa。

结论

与上下相邻椎体(ULAV)骨水泥分布不均相比,ULAV骨水泥均匀分布可降低并均匀SV和椎间盘上的应力负荷。理论上,其可导致夹心椎骨折发生率最低,椎间盘退变速度最慢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50ec/11191753/2f40f8cbcd81/JSP2-7-e1343-g004.jpg

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