Image-guided failure assessment of human trabecular bone - Inverse finite element modelling for characterization of elastic properties

被引:0
|
作者
Zwahlen, Alexander [1 ]
Christen, David [1 ]
Ruffoni, Davide [1 ]
Schneider, Philipp [1 ]
Schmoelz, Werner [2 ]
Mueller, Ralph [1 ]
机构
[1] Swiss Fed Inst Technol, Inst Biomech, Zurich, Switzerland
[2] Med Univ Innsbruck, Univ Klin Unfallchirurg, Innsbruck, Austria
来源
BIOMEDICAL ENGINEERING-BIOMEDIZINISCHE TECHNIK | 2013年 / 58卷
关键词
Image-guided failure assessment; strain mapping; synchrotron radiation mu CT; inverse mu FE modeling;
D O I
10.1515/bmt-2013-4114
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Local interpretation of micro finite element (mu FE) simulations has become important in different fields of bone biomechanics. Although on an apparent level mu FE has successfully been validated against experiments, local validations are sparse and limited by imaging resolution. At the tissue level heterogeneity of Young's modulus has been reported. Although non-uniform material distribution have been shown to only have a minor influence on the apparent material properties, its impact on local material behaviour is largely unknown. By combining image-guided failure assessment (IGFA) using synchrotron-based-micro-computed tomography, strain mapping and inverse mu FE modelling, we present an experimental and computational framework which will allow studying local effects of intratrabecular heterogeneity of the Young's modulus.
引用
收藏
页数:2
相关论文
共 31 条
  • [1] Inverse Finite Element Modeling for Characterization of Local Elastic Properties in Image-Guided Failure Assessment of Human Trabecular Bone
    Zwahlen, Alexander
    Christen, David
    Ruffoni, Davide
    Schneider, Philipp
    Schmoelz, Werner
    Mueller, Ralph
    JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2015, 137 (01):
  • [2] Characterization of Material Properties Based on Inverse Finite Element Modelling
    Jamal, Mikdam
    Morgan, Michael N.
    INVENTIONS, 2019, 4 (03)
  • [3] Determination of trabecular bone tissue elastic properties by comparison of experimental and finite element results
    Van Rietbergen, B
    Kabel, J
    Odgaard, A
    Huiskes, R
    MATERIAL IDENTIFICATION USING MIXED NUMERICAL EXPERIMENTAL METHODS, 1997, : 183 - 192
  • [4] The effective elastic properties of human trabecular bone may be approximated using micro-finite element analyses of embedded volume elements
    Karol Daszkiewicz
    Ghislain Maquer
    Philippe K. Zysset
    Biomechanics and Modeling in Mechanobiology, 2017, 16 : 731 - 742
  • [5] The effective elastic properties of human trabecular bone may be approximated using micro-finite element analyses of embedded volume elements
    Daszkiewicz, Karol
    Maquer, Ghislain
    Zysset, Philippe K.
    BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 2017, 16 (03) : 731 - 742
  • [6] Clinical CT-Based Assessment of Trabecular Bone Shear Modulus using Nonlinear Finite Element Modelling
    Guha, Indranil
    Zhang, Xiaoliu
    Saha, Punam K.
    MEDICAL IMAGING 2022: BIOMEDICAL APPLICATIONS IN MOLECULAR, STRUCTURAL, AND FUNCTIONAL IMAGING, 2022, 12036
  • [7] ASSESSMENT OF TRABECULAR BONE STRENGTH AT IN VIVO CT IMAGING WITH SPACE-VARIANT HYSTERESIS AND FINITE ELEMENT MODELLING
    Chen, Cheng
    Amelon, Ryan E.
    Heiner, Anneliese
    Saha, Punam K.
    2016 IEEE 13TH INTERNATIONAL SYMPOSIUM ON BIOMEDICAL IMAGING (ISBI), 2016, : 872 - 875
  • [8] A new method to determine trabecular bone elastic properties and loading using micromechanical finite-element models
    Biomechanics Section, Institute of Orthopaedics, University of Nijmegen, Netherlands
    不详
    不详
    J. BIOMECH., 1 (69-81):
  • [9] A NEW METHOD TO DETERMINE TRABECULAR BONE ELASTIC PROPERTIES AND LOADING USING MICROMECHANICAL FINITE-ELEMENT MODELS
    VANRIETBERGEN, B
    WEINANS, H
    HUISKES, R
    ODGAARD, A
    JOURNAL OF BIOMECHANICS, 1995, 28 (01) : 69 - +
  • [10] Failure modelling of trabecular bone using a non-linear combined damage and fracture voxel finite element approach
    Harrison, Noel M.
    McDonnell, Pat
    Mullins, Liam
    Wilson, Niall
    O'Mahoney, Denis
    McHugh, Peter E.
    BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 2013, 12 (02) : 225 - 241