International audienceThis study determined the influence of trabecular bone microstructure and material properties on QUS parameters using numerical simulations coupled with high‐resolution synchrotron radiation μCT.Introduction: Finite‐difference time domain (FDTD) simulations coupled to 3D microstructural models of trabecular bone reconstructed from synchrotron radiation microtomography (SR‐μCT) were used herein to compare and quantify the effects of bone volume fraction, microstructure, and material properties on QUS parameters.Materials and Methods: 3D SR‐μCT datasets of 30 trabecular human femoral bone specimens were used to create binary digital 3D models. We studied the sensitivity of quantitative ultrasound (QUS) to bone volume fra...
AbstractThe paper describes the computer simulations allowing investigating the properties of the ul...
In osteoporosis, changes in tissue composition and structure reduce bone strength and expose it to f...
We analyzed the ability of the quantitative ultrasound (QUS) parameter, speed of sound (SOS), and bo...
International audienceThis study determined the influence of trabecular bone microstructure and mate...
International audienceThe physical principles underlying quantitative ultrasound (QUS) measurements ...
articleThe present study was designed to assess the relationships between QUS parameters and bone de...
New quantitative ultrasound (QUS) techniques involving ultrasound backscattering have been introduce...
We investigated whether quantitative ultrasound (QUS) parameters are associated with bone structure....
Three-dimensional numerical simulations of ultrasound transmission were performed through 31 trabecu...
The composition of bone marrow is influenced by many factors, such as age and diseases. The present ...
articleNumerical simulations (finite-difference time domain) are compared to experimental results of...
The aim of this in vitro study is to evaluate the potentiality of quantitative ultrasound (QUS) to s...
AbstractThe paper describes the computer simulations allowing investigating the properties of the ul...
In osteoporosis, changes in tissue composition and structure reduce bone strength and expose it to f...
We analyzed the ability of the quantitative ultrasound (QUS) parameter, speed of sound (SOS), and bo...
International audienceThis study determined the influence of trabecular bone microstructure and mate...
International audienceThe physical principles underlying quantitative ultrasound (QUS) measurements ...
articleThe present study was designed to assess the relationships between QUS parameters and bone de...
New quantitative ultrasound (QUS) techniques involving ultrasound backscattering have been introduce...
We investigated whether quantitative ultrasound (QUS) parameters are associated with bone structure....
Three-dimensional numerical simulations of ultrasound transmission were performed through 31 trabecu...
The composition of bone marrow is influenced by many factors, such as age and diseases. The present ...
articleNumerical simulations (finite-difference time domain) are compared to experimental results of...
The aim of this in vitro study is to evaluate the potentiality of quantitative ultrasound (QUS) to s...
AbstractThe paper describes the computer simulations allowing investigating the properties of the ul...
In osteoporosis, changes in tissue composition and structure reduce bone strength and expose it to f...
We analyzed the ability of the quantitative ultrasound (QUS) parameter, speed of sound (SOS), and bo...