Nonlinear finite element (FE) modeling can be a powerful tool for studying femoral fracture. However, there remains little consensus in the literature regarding the choice of material model and failure criterion. Quasi-brittle models recently have been used with some success, but spurious mesh sensitivity remains a concern. The purpose of this study was to implement and validate a new model using a custom finite element designed to mitigate mesh sensitivity problems. Six specimen-specific FE models of the proximal femur were generated from quantitative tomographic (qCT) scans of cadaveric specimens. Material properties were assigned a-priori based on average qCT intensities at element locations. Specimens were experimentally tested to failu...
Hip fractures are a major health problem with high socio-economic costs. Subject-specific finite ele...
Vertebral compression fracture is a common medical problem in osteoporotic individuals. The quantita...
Nonlinear finite element (FE) models can accurately quantify bone strength in healthy and metastatic...
To manage osteoporotic hip fracture risk, it is necessary to understand failure mechanisms of bone a...
Proximal femur strength estimates from computed tomography (CT)-based finite element (FE) models are...
Purpose Femoral fracture is a common medical problem in osteoporotic individuals. Bone mineral de...
International audienceFinite element analysis is one of the most used tool for studying femoral neck...
Previously, we showed that case-specific non-linear finite element (FE) models are better at predict...
The Surgeon General estimates that by 2020, half of all Americans could have weak bones due to bone ...
Item does not contain fulltextPreviously, we showed that case-specific non-linear finite element (FE...
This paper presents a novel method for prediction of the mechanical behavior of proximal femur using...
Subject-specific finite element models have been proposed as a tool to improve fracture risk assessm...
Hip fractures constitute a major problem, both in terms of a lower life quality for the people affec...
International audienceIn this paper, a simple and practical two-dimensional finite element (FE) mode...
The present paper addresses femur failure mechanics, by numerically investigating the influence of b...
Hip fractures are a major health problem with high socio-economic costs. Subject-specific finite ele...
Vertebral compression fracture is a common medical problem in osteoporotic individuals. The quantita...
Nonlinear finite element (FE) models can accurately quantify bone strength in healthy and metastatic...
To manage osteoporotic hip fracture risk, it is necessary to understand failure mechanisms of bone a...
Proximal femur strength estimates from computed tomography (CT)-based finite element (FE) models are...
Purpose Femoral fracture is a common medical problem in osteoporotic individuals. Bone mineral de...
International audienceFinite element analysis is one of the most used tool for studying femoral neck...
Previously, we showed that case-specific non-linear finite element (FE) models are better at predict...
The Surgeon General estimates that by 2020, half of all Americans could have weak bones due to bone ...
Item does not contain fulltextPreviously, we showed that case-specific non-linear finite element (FE...
This paper presents a novel method for prediction of the mechanical behavior of proximal femur using...
Subject-specific finite element models have been proposed as a tool to improve fracture risk assessm...
Hip fractures constitute a major problem, both in terms of a lower life quality for the people affec...
International audienceIn this paper, a simple and practical two-dimensional finite element (FE) mode...
The present paper addresses femur failure mechanics, by numerically investigating the influence of b...
Hip fractures are a major health problem with high socio-economic costs. Subject-specific finite ele...
Vertebral compression fracture is a common medical problem in osteoporotic individuals. The quantita...
Nonlinear finite element (FE) models can accurately quantify bone strength in healthy and metastatic...