The strength as well as the acoustic properties of trabecular bone are determined by its structure and composition. Consequently, tissue structure and compositional properties also affect the ultrasound propagation in bone. The diagnostic potential of ultrasound has not been fully exploited in clinical quantitative ultrasound devices. The aim of this study was to investigate the ability of quantitative ultrasound pulse-echo imaging, conducted over a broad range of frequencies (1 to 5 MHz), to predict the mechanics, composition and microstructure of trabecular bone. Ultrasound reflection and backscatter parameters correlated significantly with the ultimate strength of the trabecular bone and the bone volume fraction (r = 0.76-0.90, n = 20, p...
none6INTRODUCTION: Ultrasound studies evaluating bone tissue generally concentrate on two parameters...
We present a method to estimate trabecular thickness (Tb.Th) in trabecular bones from ultrasound bac...
International audienceThe physical principles underlying quantitative ultrasound (QUS) measurements ...
The ultrasound (US) backscattering method has been introduced as an alternative for the through-tran...
New quantitative ultrasound (QUS) techniques involving ultrasound backscattering have been introduce...
New quantitative ultrasound techniques have been introduced for the assessment of bone quality. The ...
In osteoporosis, changes in tissue composition and structure reduce bone strength and expose it to f...
Ultrasound reflection and backscatter parameters are related to the mechanical and structural proper...
Ultrasound (US) backscatter measurements have been proposed for the quantitative evaluation of bone ...
Ultrasound reflection and backscatter parameters have been shown to be related to mechanical and str...
articleThe present study was designed to assess the relationships between QUS parameters and bone de...
The paper considers the application of statistical properties of backscattered ultrasonic signal for...
To determine the relationship between the ultrasonic backscatter parameters and trabecular microstru...
We investigated whether quantitative ultrasound (QUS) parameters are associated with bone structure....
During the two recent decades, quantitative ultrasound (QUS) methods have been developed for in vivo...
none6INTRODUCTION: Ultrasound studies evaluating bone tissue generally concentrate on two parameters...
We present a method to estimate trabecular thickness (Tb.Th) in trabecular bones from ultrasound bac...
International audienceThe physical principles underlying quantitative ultrasound (QUS) measurements ...
The ultrasound (US) backscattering method has been introduced as an alternative for the through-tran...
New quantitative ultrasound (QUS) techniques involving ultrasound backscattering have been introduce...
New quantitative ultrasound techniques have been introduced for the assessment of bone quality. The ...
In osteoporosis, changes in tissue composition and structure reduce bone strength and expose it to f...
Ultrasound reflection and backscatter parameters are related to the mechanical and structural proper...
Ultrasound (US) backscatter measurements have been proposed for the quantitative evaluation of bone ...
Ultrasound reflection and backscatter parameters have been shown to be related to mechanical and str...
articleThe present study was designed to assess the relationships between QUS parameters and bone de...
The paper considers the application of statistical properties of backscattered ultrasonic signal for...
To determine the relationship between the ultrasonic backscatter parameters and trabecular microstru...
We investigated whether quantitative ultrasound (QUS) parameters are associated with bone structure....
During the two recent decades, quantitative ultrasound (QUS) methods have been developed for in vivo...
none6INTRODUCTION: Ultrasound studies evaluating bone tissue generally concentrate on two parameters...
We present a method to estimate trabecular thickness (Tb.Th) in trabecular bones from ultrasound bac...
International audienceThe physical principles underlying quantitative ultrasound (QUS) measurements ...