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考虑完整和植入髋关节和膝关节的有限元分析中的患者变异性:综述。

Accounting for patient variability in finite element analysis of the intact and implanted hip and knee: a review.

机构信息

Medical Device Research Institute, School of Computer Science, Engineering and Mathematics, Flinders University, Adelaide, Australia.

出版信息

Int J Numer Method Biomed Eng. 2013 Feb;29(2):273-92. doi: 10.1002/cnm.2530. Epub 2012 Dec 18.

Abstract

It is becoming increasingly difficult to differentiate the performance of new joint replacement designs using available preclinical test methods. Finite element analysis is commonly used and the majority of published studies are performed on representative anatomy, assuming optimal implant placement, subjected to idealised loading conditions. There are significant differences between patients and accounting for this variability will lead to better assessment of the risk of failure. This review paper provides a comprehensive overview of the techniques available to account for patient variability. There is a brief overview of patient-specific model generation techniques, followed by a review of multisubject patient-specific studies performed on the intact and implanted femur and tibia. In particular, the challenges and limitations of manually generating models for such studies are discussed. To efficiently account for patient variability, the application of statistical shape and intensity models (SSIM) are being developed. Such models have the potential to synthetically generate thousands of representative models generated from a much smaller training set. Combined with the automation of the prosthesis implantation process, SSIM provides a potentially powerful tool for assessing the next generation of implant designs. The potential application of SSIM are discussed along with their limitations.

摘要

使用现有的临床前测试方法来区分新型关节置换设计的性能变得越来越困难。有限元分析通常被使用,并且大多数已发表的研究都是在代表性解剖结构上进行的,假设了最佳的植入物放置位置,并承受理想的加载条件。患者之间存在显著差异,考虑到这种变异性将有助于更好地评估失败风险。本文综述了可用于考虑患者变异性的技术。简要概述了患者特定模型生成技术,然后回顾了在完整和植入股骨和胫骨上进行的多主题患者特定研究。特别是,讨论了为这些研究手动生成模型的挑战和限制。为了有效地考虑患者变异性,正在开发统计形状和强度模型(SSIM)的应用。这些模型具有从更小的训练集中综合生成数千个代表性模型的潜力。结合假体植入过程的自动化,SSIM 为评估下一代植入物设计提供了一个潜在的强大工具。讨论了 SSIM 的潜在应用及其局限性。

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