The importance of assessing trabecular architecture together with bone mineral density to determine bone stiffness and fracture risk in osteoporosis has been well established. However, no imaging modalities are available to assess trabecular architecture at clinically relevant sites in the axial skeleton. Recently developed flat-panel CT devices, however, offer resolutions that are potentially good enough to resolve bone architecture at these sites. The goal of the present study was to investigate how accurate trabecular architecture and stiffness can be determined based on images from such a device (XperCT, Philips Healthcare). Ten cadaver human C3 vertebrae, twelve T12 vertebrae and 12 proximal femora were scanned with XperCT while mimick...
High-resolution micro computed tomography has enabled measurement of bone architecture derived from ...
In this study, we investigate if finite element (FE) analyses of human trabecular bone architecture ...
Finite element (FE) models based on quantitative computed tomography (CT) images are better predicto...
The importance of assessing trabecular architecture together with bone mineral density to determine ...
Stiffness and shear moduli of human trabecular bone may be analyzed in vivo by finite element (FE) a...
Stiffness and shear moduli of human trabecular bone may be analyzed in vivo by finite element (FE) a...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
Trabecular bone structure as well as bone mineral density (BMD) have impact on the biomechanical com...
Most standard methods to predict bone quality are merely based on apparent density measurements. How...
SummaryThe standard diagnostic technique for assessing osteoporosis is dual X-ray absorptiometry (DX...
High-resolution micro computed tomography has enabled measurement of bone architecture derived from ...
In this study, we investigate if finite element (FE) analyses of human trabecular bone architecture ...
Finite element (FE) models based on quantitative computed tomography (CT) images are better predicto...
The importance of assessing trabecular architecture together with bone mineral density to determine ...
Stiffness and shear moduli of human trabecular bone may be analyzed in vivo by finite element (FE) a...
Stiffness and shear moduli of human trabecular bone may be analyzed in vivo by finite element (FE) a...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
Trabecular bone structure as well as bone mineral density (BMD) have impact on the biomechanical com...
Most standard methods to predict bone quality are merely based on apparent density measurements. How...
SummaryThe standard diagnostic technique for assessing osteoporosis is dual X-ray absorptiometry (DX...
High-resolution micro computed tomography has enabled measurement of bone architecture derived from ...
In this study, we investigate if finite element (FE) analyses of human trabecular bone architecture ...
Finite element (FE) models based on quantitative computed tomography (CT) images are better predicto...