<p>Overview of the elastic modulus of human vertebral bone tissue reported in the literature from wet microindentation tests performed at the BSU level, or from back-calculation procedures in combination with microFE models.</p
The objective of this dissertation is to understand the influences of material structure on the prop...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
This paper investigates the literature available for derivation of the elastic modulus (E) as employ...
Purpose: The better understanding of vertebral mechanical properties can help to improve the diagnos...
Finite element models of bones can be created by deriving geometry from anx-ray CT scan. Material pr...
International audienceThis work consists of the validation of a novel approach to estimate the local...
<p>The elastic modulus (A) and hardness (B) in the various regions of the femoral head. *<i>P</i> < ...
Six porcine and four human cadaveric vertebrae were imaged using micro computed tomography (μCT) (Sc...
The elastic modulus and hardness of several microstructure components of dry bovine vertebrae and ti...
Bone is a heterogeneous material and its mechanical properties vary within the body. Variations in t...
200 MHz acoustic impedance maps and site-matched synchrotron radiation micro computed tomography (SR...
International audienceThe current work aimed at comparing, on site-matched cortical bone tissue, the...
article200 MHz acoustic impedance maps and site-matched synchrotron radiation micro computed tomogra...
It is well known that the mechanical behaviour of cancellous bone depends not only on its mineral co...
The elastic moduli of human subchondral, trabecular, and cortical bone tissue from a proximal tibia ...
The objective of this dissertation is to understand the influences of material structure on the prop...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
This paper investigates the literature available for derivation of the elastic modulus (E) as employ...
Purpose: The better understanding of vertebral mechanical properties can help to improve the diagnos...
Finite element models of bones can be created by deriving geometry from anx-ray CT scan. Material pr...
International audienceThis work consists of the validation of a novel approach to estimate the local...
<p>The elastic modulus (A) and hardness (B) in the various regions of the femoral head. *<i>P</i> < ...
Six porcine and four human cadaveric vertebrae were imaged using micro computed tomography (μCT) (Sc...
The elastic modulus and hardness of several microstructure components of dry bovine vertebrae and ti...
Bone is a heterogeneous material and its mechanical properties vary within the body. Variations in t...
200 MHz acoustic impedance maps and site-matched synchrotron radiation micro computed tomography (SR...
International audienceThe current work aimed at comparing, on site-matched cortical bone tissue, the...
article200 MHz acoustic impedance maps and site-matched synchrotron radiation micro computed tomogra...
It is well known that the mechanical behaviour of cancellous bone depends not only on its mineral co...
The elastic moduli of human subchondral, trabecular, and cortical bone tissue from a proximal tibia ...
The objective of this dissertation is to understand the influences of material structure on the prop...
With improving clinical CT scanning technology, the accuracy of CT-based finite element (FE) models ...
This paper investigates the literature available for derivation of the elastic modulus (E) as employ...