Bone mineral density (BMD) is currently the preferred surrogate for bone strength in clinical practice. Finite element analysis (FEA) is a computer simulation technique that can predict the deformation of a structure when a load is applied, providing a measure of stiffness (N mm− 1). Finite element analysis of X-ray images (3D-FEXI) is a FEA technique whose analysis is derived from a single 2D radiographic image.\ud \ud This ex-vivo study demonstrates that 3D-FEXI derived from a conventional 2D radiographic image has the potential to significantly increase the accuracy of failure load assessment of the proximal femur compared with that currently achieved with BMD
Areal bone mineral density (aBMD), as measured by dual-energy X-ray absorptiometry (DXA), predicts h...
There is an urgent need to improve the prediction of fracture risk for cancer patients with bone met...
Computed tomography (CT)-derived finite element (FE) models have been proposed as a tool to improve ...
Introduction: Bone mineral density (BMD) is currently the preferred surrogate for bone strength in c...
The preferred method of assessing the risk of an osteoporosis related fracture is currently a measur...
Areal bone mineral density (aBMD) is the most common surrogate measurement for assessing the bone st...
Finite element analysis (FEA) based on CT datasets of the spine or hip or on high-resolution periphe...
Finite element analysis (FEA) based on CT datasets of the spine or hip or on high-resolution periphe...
Measurement of bone mineral density (BMD) by dual-energy X-ray absorptiometry (DXA) alone is a moder...
This paper presents a novel method for prediction of the mechanical behavior of proximal femur using...
Low dual energy X-ray absorptiometry (DXA) measured bone mineral density (BMD) is used as an indicat...
Osteoporotic fractures are a major clinical problem and current diagnostic tools have an accuracy of...
Prevention of osteoporotic fractures requires accurate methods to detect the increase in bone fragil...
There is increasing evidence that, in addition to bone mass, bone microarchitecture and its mechanic...
Osteoporotic fractures are a major clinical problem and current diagnostic tools have an accuracy of...
Areal bone mineral density (aBMD), as measured by dual-energy X-ray absorptiometry (DXA), predicts h...
There is an urgent need to improve the prediction of fracture risk for cancer patients with bone met...
Computed tomography (CT)-derived finite element (FE) models have been proposed as a tool to improve ...
Introduction: Bone mineral density (BMD) is currently the preferred surrogate for bone strength in c...
The preferred method of assessing the risk of an osteoporosis related fracture is currently a measur...
Areal bone mineral density (aBMD) is the most common surrogate measurement for assessing the bone st...
Finite element analysis (FEA) based on CT datasets of the spine or hip or on high-resolution periphe...
Finite element analysis (FEA) based on CT datasets of the spine or hip or on high-resolution periphe...
Measurement of bone mineral density (BMD) by dual-energy X-ray absorptiometry (DXA) alone is a moder...
This paper presents a novel method for prediction of the mechanical behavior of proximal femur using...
Low dual energy X-ray absorptiometry (DXA) measured bone mineral density (BMD) is used as an indicat...
Osteoporotic fractures are a major clinical problem and current diagnostic tools have an accuracy of...
Prevention of osteoporotic fractures requires accurate methods to detect the increase in bone fragil...
There is increasing evidence that, in addition to bone mass, bone microarchitecture and its mechanic...
Osteoporotic fractures are a major clinical problem and current diagnostic tools have an accuracy of...
Areal bone mineral density (aBMD), as measured by dual-energy X-ray absorptiometry (DXA), predicts h...
There is an urgent need to improve the prediction of fracture risk for cancer patients with bone met...
Computed tomography (CT)-derived finite element (FE) models have been proposed as a tool to improve ...