In this study, we investigate if finite element (FE) analyses of human trabecular bone architecture based on 168 microm images can provide relevant information about the bone mechanical characteristics. Three human trabecular bone samples, one taken from the femoral head, one from the iliac crest, and one from the lumbar spine, were imaged with micro-computed tomography (micro-CT) using a 28 microm resolution. After reconstruction the resolution was coarsened to 168 microm. First, all reconstructions were thresholded and directly converted to FE-models built of hexahedral elements. For the coarser resolutions of two samples, this resulted in a loss of trabecular connections and a subsequent loss of stiffness. To reduce this effect, a tetrah...
Consulta en la Biblioteca ETSI Industriales (7986)[eng] The strength of our bone results from a comp...
© 2018, Biomedical Engineering Society. Preclinical and clinical bone strength predictions can be el...
Trabecular bone is made up of an irregular, interconnecting framework of rod- and plate-like struts ...
In this study, we investigate if finite element (FE) analyses of human trabecular bone architecture ...
In this study, we investigate if Þnite element (FE) analyses of human trabecular bone architecture b...
International audienceNumerical simulation using finite element models (FEM) has become more and mor...
The apparent mechanical behavior of trabecular bone depends on properties at the tissue or trabecula...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
In order to help the assessment of trabecular bone diseases and complement dual X-Ray absorptiometry...
International audienceTo determine intrinsic mechanical properties (elastic and failure) of trabecul...
In the article a detailed comparison of techniques used to developed detailed FE models of trabeculr...
The main goal of this study was to build a finite element model for trabecular bone from micro-compu...
Trabecular bone is a highly porous, heterogeneous, and anisotropic material which can be found at th...
Consulta en la Biblioteca ETSI Industriales (7986)[eng] The strength of our bone results from a comp...
© 2018, Biomedical Engineering Society. Preclinical and clinical bone strength predictions can be el...
Trabecular bone is made up of an irregular, interconnecting framework of rod- and plate-like struts ...
In this study, we investigate if finite element (FE) analyses of human trabecular bone architecture ...
In this study, we investigate if Þnite element (FE) analyses of human trabecular bone architecture b...
International audienceNumerical simulation using finite element models (FEM) has become more and mor...
The apparent mechanical behavior of trabecular bone depends on properties at the tissue or trabecula...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
In order to help the assessment of trabecular bone diseases and complement dual X-Ray absorptiometry...
International audienceTo determine intrinsic mechanical properties (elastic and failure) of trabecul...
In the article a detailed comparison of techniques used to developed detailed FE models of trabeculr...
The main goal of this study was to build a finite element model for trabecular bone from micro-compu...
Trabecular bone is a highly porous, heterogeneous, and anisotropic material which can be found at th...
Consulta en la Biblioteca ETSI Industriales (7986)[eng] The strength of our bone results from a comp...
© 2018, Biomedical Engineering Society. Preclinical and clinical bone strength predictions can be el...
Trabecular bone is made up of an irregular, interconnecting framework of rod- and plate-like struts ...