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使用计算模型对体内个体特异性关节表面的材料特性进行概率评估。

Probabilistic evaluation of the material properties of the in vivo subject-specific articular surface using a computational model.

作者信息

Kang Kyoung-Tak, Kim Sung-Hwan, Son Juhyun, Lee Young Han, Kim Shinil, Chun Heoung-Jae

机构信息

Department of Mechanical Engineering, Yonsei University, Seoul, 03722, Republic of Korea.

Department of Orthopedic Surgery, Gangnam Severance Hospital, Arthroscopy and Joint Research Institute, Yonsei University College of Medicine, Seoul, 06273, Republic of Korea.

出版信息

J Biomed Mater Res B Appl Biomater. 2017 Aug;105(6):1390-1400. doi: 10.1002/jbm.b.33666. Epub 2016 Apr 15.

Abstract

This article used probabilistic analysis to evaluate material properties of the in vivo subject-specific tibiofemoral (TF) joint model. Sensitivity analysis, based on a Monte Carlo (MC) method, was performed using a subject-specific finite element (FE) model generated from in vivo computed tomography (CT) and magnetic resonance imaging (MRI) data, subjected to two different loading conditions. Specifically, the effects of inherent uncertainty in ligament stiffness, horn attachment stiffness, and articular surface material properties were assessed using multifactorial global sensitivity analysis. The MRI images were taken before and after axial compression, and when the flexion condition had been maintained at up to 90 degree flexion in the subject-specific knee joint. The loading conditions of the probabilistic subject-specific FE model (axial compression and 90 degree flexion) were similar to the MRI acquisition setup. We were able to detect the influence of material parameters while maintaining the potential effect of parametric interactions. Throughout the in silico property optimization, a subject-specific FE model was used and less sensitive parameters were eliminated in the global sensitivity method. Soft tissue material properties were estimated using an optimization procedure that involved the minimization of the differences between the kinematics predicted by the subject-specific model and those obtained through in vivo subject-specific data. The results of this approach suggest that the articular surface mechanical properties could be found by using in vivo measurements, which clarifies the valuable tool for future subject-specific studies related to TF joint scaffolds, allografts and biologics. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1390-1400, 2017.

摘要

本文采用概率分析方法评估体内个体特异性胫股(TF)关节模型的材料特性。基于蒙特卡罗(MC)方法的敏感性分析,使用从体内计算机断层扫描(CT)和磁共振成像(MRI)数据生成的个体特异性有限元(FE)模型,在两种不同加载条件下进行。具体而言,使用多因素全局敏感性分析评估韧带刚度、角附着刚度和关节表面材料特性中固有不确定性的影响。MRI图像在轴向压缩前后拍摄,且在个体特异性膝关节保持屈曲状态达90度时拍摄。概率性个体特异性FE模型的加载条件(轴向压缩和90度屈曲)与MRI采集设置相似。我们能够在保持参数相互作用潜在影响的同时检测材料参数的影响。在整个计算机模拟特性优化过程中,使用了个体特异性FE模型,并在全局敏感性方法中消除了不太敏感的参数。软组织材料特性使用一种优化程序进行估计,该程序涉及最小化个体特异性模型预测的运动学与通过体内个体特异性数据获得的运动学之间的差异。该方法的结果表明,通过体内测量可以找到关节表面力学特性,这为未来与TF关节支架、同种异体移植物和生物制品相关的个体特异性研究提供了有价值的工具。© 2016威利期刊公司。《生物医学材料研究杂志》B部分:应用生物材料,105B:1390 - 1400,2017。

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