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融合与稳定的生物力学

Biomechanics of fusion and stabilization.

作者信息

Goel V K, Pope M H

机构信息

Department of Biomedical Engineering, University of Iowa, Iowa City, USA.

出版信息

Spine (Phila Pa 1976). 1995 Dec 15;20(24 Suppl):85S-99S.

PMID:8747262
Abstract

STUDY DESIGN

Literature review.

OBJECTIVES

To assess the state of the art in the biomechanics of fusions, fusion materials, and the use of instrumentation by critically reviewing the literature as modified by group discussion.

SUMMARY OF BACKGROUND DATA

A considerable body of knowledge addresses these issues based on in vitro biomechanical testing and mathematical models. Much biomechanical information is available regarding the biomechanical behavior of the graft material, the fusion, and the instrumentation. Biomechanical testing and finite element analyses remain to be done on semirigid devices, interbody spacers, and artificial discs.

METHODS

The literature was reviewed to analyze papers written on the following topics: graft material, in vitro tests of instrumentation, device evaluation using artificial spine models, in vivo human studies, animal models, finite element studies, effects of rigidity, and bone adaptive remodeling.

RESULTS

One hundred forty-one modern articles were reviewed and their data analyzed. Much important insight has come from biomechanical studies.

CONCLUSIONS

Fusions are largely successful. Biomechanical data is complete except for some of the latest devices.

摘要

研究设计

文献综述。

目的

通过批判性地回顾文献并经小组讨论加以完善,评估融合术生物力学、融合材料及器械使用方面的技术现状。

背景资料总结

基于体外生物力学测试和数学模型,已有相当多的知识涉及这些问题。关于移植材料、融合术及器械的生物力学行为,有大量生物力学信息。对于半刚性装置、椎间融合器和人工椎间盘,仍有待进行生物力学测试和有限元分析。

方法

回顾文献,分析以下主题的论文:移植材料、器械的体外测试、使用人工脊柱模型进行的装置评估、人体体内研究、动物模型、有限元研究、刚度的影响以及骨适应性重塑。

结果

回顾了141篇现代文章并分析了其数据。生物力学研究带来了许多重要见解。

结论

融合术在很大程度上是成功的。除了一些最新的装置外,生物力学数据已完备。

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