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人工腰椎间盘置换的假体优化与力学分析。

Prosthesis optimization and mechanical analysis of artificial lumbar disc replacement.

机构信息

Institute of Mechanical Engineering, Dalian Jiaotong University, Dalian 116028, Liaoning, China.

Institute of Mechanical Engineering, Dalian Jiaotong University, Dalian 116028, Liaoning, China.

出版信息

J Clin Neurosci. 2024 Aug;126:319-327. doi: 10.1016/j.jocn.2024.07.008. Epub 2024 Jul 16.

Abstract

BACKGROUND

Artificial lumbar disc replacement is an effective method for the treatment of lumbosacral degenerative diseases. An appropriate artificial intervertebral disc device is of great significance for the maintenance of spinal stability and activity.

METHODS

Two finite element models of ProDisc-L prosthesis replacement and improved prosthesis replacement were constructed by using the finite element model of complete lumbar L1-L5 segment established by CT image data. The mechanical properties of the surgical models before and after improvement were analyzed and evaluated.

RESULTS

The ProDisc-L group and the improved group showed similar lumbar's ROM and maintained a similar ROM with the normal lumbar spine. There was no significant change in the intervertebral disc's pressure between the adjacent segments of the two prosthesis groups compared with the normal group, but the stress value of the improved prosthesis group was slightly lower than that of the ProDisc-L group. In addition, the improved prosthesis replacement has more reasonable stress distribution.

CONCLUSIONS

Compared with the ProDisc-L prosthesis, the improved prosthesis can reduce the pressure in the intervertebral disc of the adjacent segment, the contact stress of the facet joint and the artificial prosthesis, which provides reference for the subsequent design of the prosthesis structure.

摘要

背景

人工腰椎间盘置换术是治疗腰骶部退行性疾病的有效方法。合适的人工椎间盘装置对于维持脊柱稳定性和活动度具有重要意义。

方法

通过对 CT 图像数据建立的完整腰椎 L1-L5 节段的有限元模型,构建 ProDisc-L 假体置换和改良假体置换的两个有限元模型。分析和评估手术模型改进前后的力学性能。

结果

ProDisc-L 组和改良组的腰椎 ROM 相似,与正常腰椎保持相似的 ROM。与正常组相比,两组假体相邻节段椎间盘压力无明显变化,但改良假体组的应力值略低于 ProDisc-L 组。此外,改良假体置换具有更合理的应力分布。

结论

与 ProDisc-L 假体相比,改良假体可降低相邻节段椎间盘的压力、小关节突关节和人工假体的接触应力,为后续假体结构设计提供参考。

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