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首页> 外文期刊>Medical engineering & physics. >Finite element analysis of the spine: towards a framework of verification, validation and sensitivity analysis.
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Finite element analysis of the spine: towards a framework of verification, validation and sensitivity analysis.

机译:脊柱的有限元分析:朝着验证,确认和敏感性分析的框架发展。

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摘要

A number of papers have recently emphasised the importance of verification, validation and sensitivity testing in computational studies within the field of biomechanical engineering. This review examines the methods used in the development of spinal finite element models with a view to a standardised framework of verification, validation and sensitivity analysis. The scope of this paper is restricted to models of the vertebra, the intervertebral disc and short spinal segments. In the case of single vertebral models, specimen-specific methods have been developed, which allow direct validation against experimental tests. The focus of intervertebral disc modelling has been on representing the complex material properties and further sensitivity testing is required to fully understand the relative roles of these input parameters. In order to construct complex multi-component short segment models, many geometric and material parameters are required, some of which are yet to be fully characterised. There are also major challenges in terms of short segment model validation. Throughout the review, areas of good practise are highlighted and recommendations for future development are proposed, taking a step towards more robust spinal modelling procedures, promoting acceptance from the wider biomechanics community.
机译:最近,许多论文都强调了在生物力学工程领域中计算研究中验证,确认和敏感性测试的重要性。这篇综述检查了用于开发脊柱有限元模型的方法,以期建立一个验证,确认和敏感性分析的标准化框架。本文的范围仅限于椎骨,椎间盘和短脊柱节段的模型。对于单椎骨模型,已经开发了标本特定的方法,可以直接针对实验测试进行验证。椎间盘建模的重点一直在代表复杂的材料特性,并且需要进行进一步的灵敏度测试以充分了解这些输入参数的相对作用。为了构造复杂的多组分短段模型,需要许多几何和材料参数,其中一些参数尚待充分表征。在短片段模型验证方面也存在重大挑战。在整个审查过程中,重点介绍了良好实践领域,并提出了对未来发展的建议,并朝着更强大的脊柱建模程序迈出了一步,促进了更广泛的生物力学界的认可。

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