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基于计算模型的概率分析,利用松弛试验和计算机断层扫描确定体内韧带刚度的材料特性。

Computational model-based probabilistic analysis of in vivo material properties for ligament stiffness using the laxity test and computed tomography.

作者信息

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

机构信息

Department of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 03722, Republic of Korea.

Department of Orthopedic Surgery, Arthroscopy and Joint Research Institute, Yonsei University College of Medicine, Gangnam Severance Hospital, 211 Eonju-ro, Gangnam-gu, Seoul, 06273, Republic of Korea.

出版信息

J Mater Sci Mater Med. 2016 Dec;27(12):183. doi: 10.1007/s10856-016-5797-z. Epub 2016 Oct 27.

Abstract

The objective of this paper was to evaluate in vivo material properties in order to address technical aspects of computational modeling of ligaments in the tibiofemoral joint using a probabilistic method. The laxity test was applied to the anterior-posterior drawer under 30° and 90° of flexion with a series of stress radiographs, a Telos device, and computed tomography. Ligament stiffness was investigated using sensitivity analysis based on the Monte-Carlo method with a subject-specific finite element model generated from in vivo computed tomography and magnetic resonance imaging data, subjected to laxity test conditions. The material properties of ligament stiffness and initial ligament strain in a subject-specific finite element model were optimized to minimize the differences between the movements of the tibia and femur in the finite element model and the computed tomography images in the laxity test. The posterior cruciate ligament was the most significant factor in flexion and posterior drawer, while the anterior cruciate ligament primarily was the most significant factor for the anterior drawer. The optimized material properties model predictions in simulation and the laxity test were more accurate than predictions based on the initial material properties in subject-specific computed tomography measurement. Thus, this study establishes a standard for future designs in allograft, xenograft, and artificial ligaments for anterior cruciate ligament and posterior cruciate ligament injuries.

摘要

本文的目的是评估体内材料特性,以便使用概率方法解决胫股关节韧带计算建模的技术问题。通过一系列应力X线片、Telos装置和计算机断层扫描,在30°和90°屈曲状态下对前后抽屉试验进行松弛度测试。基于蒙特卡罗方法的敏感性分析,利用从体内计算机断层扫描和磁共振成像数据生成的个体特异性有限元模型,在松弛度测试条件下研究韧带刚度。优化个体特异性有限元模型中韧带刚度和初始韧带应变的材料特性,以最小化有限元模型中胫骨和股骨的运动与松弛度测试中计算机断层扫描图像之间的差异。后交叉韧带是屈曲和后抽屉试验中最重要的因素,而前交叉韧带主要是前抽屉试验中最重要的因素。模拟和松弛度测试中优化后的材料特性模型预测比基于个体特异性计算机断层扫描测量中的初始材料特性的预测更准确。因此,本研究为未来前交叉韧带和后交叉韧带损伤的同种异体移植物、异种移植物和人工韧带设计建立了标准。

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