...
首页> 外文期刊>Journal of Translational Medicine >Model for in-vivo estimation of stiffness of tibiofemoral joint using MR imaging and FEM analysis
【24h】

Model for in-vivo estimation of stiffness of tibiofemoral joint using MR imaging and FEM analysis

机译:使用MR成像和FEM分析的胫铁膜关节刚度体内估计模型

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Appropriate structural and material properties are essential for finite-element-modeling (FEM). In knee FEM, structural information could extract through 3D-imaging, but the individual subject’s tissue material properties are inaccessible. The current study's purpose was to develop a methodology to estimate the subject-specific stiffness of the tibiofemoral joint using finite-element-analysis (FEA) and MRI data of knee joint with and without load. In this study, six Magnetic Resonance Imaging (MRI) datasets were acquired from 3 healthy volunteers with axially loaded and unloaded knee joint. The strain was computed from the tibiofemoral bone gap difference (ΔmBGFT) using the knee MR images with and without load. The knee FEM study was conducted using a subject-specific knee joint 3D-model and various soft-tissue stiffness values (1 to 50?MPa) to develop subject-specific stiffness versus strain models. Less than 1.02% absolute convergence error was observed during the simulation. Subject-specific combined stiffness of weight-bearing tibiofemoral soft-tissue was estimated with mean values as 2.40?±?0.17?MPa. Intra-subject variability has been observed during the repeat scan in 3 subjects as 0.27, 0.12, and 0.15?MPa, respectively. All subject-specific stiffness-strain relationship data was fitted well with power function (R2?=?0.997). The current study proposed a generalized mathematical model and a methodology to estimate subject-specific stiffness of the tibiofemoral joint for FEM analysis. Such a method might enhance the efficacy of FEM in implant design optimization and biomechanics for subject-specific studies. Trial registration The?institutional ethics committee (IEC), Indian Institute of Technology, Delhi, India, approved the?study on 20th September 2017, with reference number P-019; it was a pilot study, no clinical trail registration was recommended.
机译:适当的结构和材料特性对于有限元建模(FEM)至关重要。在膝部FEM中,结构信息可以通过3D成像提取,但是个体受试者的组织材料是无法进入的。目前的研究目的是使用有限元分析(FEA)和带有载荷的膝关节的有限元分析(FEA)和MRI数据来制定一种方法来估算胫甲术的特异性刚度。在该研究中,从3个健康志愿者获得六个磁共振成像(MRI)数据集,其具有轴向装载和卸载的膝关节。使用具有和不载荷的膝关节MR图像从胫甲骨骨间隙差(Δmbgft)计算该菌株。使用受试者特异性膝关节3D模型和各种软组织刚度值(1至50μmE)进行膝部FEM研究,以开发特异性刚度与应变模型。在模拟期间观察到小于1.02%的绝对收敛误差。估计含重的含有型胫酮软组织的主题组合刚度,平均值为2.40?±0.17?mpa。在3个受试者的重复扫描期间,在0.27,0.12和0.15≤MPa的重复扫描期间已经观察到了对象内变异性。所有受试者特定的刚度 - 应变关系数据都适用于功率功能(R2?= 0.997)。目前的研究提出了一般性的数学模型和方法来估算胫脂专用接头的对象特异性刚度进行有限元分析。这种方法可以提高FEM在植入物设计优化和生物力学中的疗效,用于对象特异性研究。审判登记?印度德里印度理工学院(IEC)的制度伦理委员会(IEC)批准了?2017年9月20日学习,参考号P-019;这是一项试点研究,不推荐临床迹线登记。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号