International audienceQuantitative ultrasound (QUS) techniques using radiofrequency (RF) backscattered signals have been used for tissue characterization of numerous organ systems. One approach is to use the magnitude and frequency dependence of backscatter echoes to quantify tissue structures. Another approach is to usefirst-order statistical properties of the echo envelope as a signature of the tissue microstructure. We propose here a unification of these QUS concepts. For this purpose, a mixture of homodyned K-distributions is introduced to model the echo envelope, together with an estimation method and a physical interpretation of its parameters based on the echo signal spectrum. In particular, the total, coherent and diffuse signal pow...
Quantitative ultrasound (QUS) techniques that parameterize the backscattered signal power spectrum h...
Ultrasound is a medical imaging modality with many advantages, such as being real-time, portable, an...
Ultrasound is a medical imaging modality with many advantages, such as being real-time, portable, an...
International audienceQuantitative ultrasound (QUS) techniques using radiofrequency (RF) backscatter...
International audienceA mixture of homodyned K-distributions corresponding to a mixture if tissue mi...
International audienceThis chapter provides a review of the last 15 years on the use of quantitative...
International audienceUltrasonic backscattered echoes from blood contain frequency-dependent informa...
Recent studies on the statistics of the envelope of the ultrasound echo signal from a random scatter...
Ultrasound RF signal, backscattered from an inhomogeneous parenchymal tissue has the character of a ...
International audienceQuantitative ultrasound (QUS) techniques for the estimation of tissue microstr...
International audienceQuantitative ultrasound (QUS) techniques for the estimation of tissue microstr...
International audienceAn Effective Medium Theory combined with the Structure Factor Model (EMTSFM) h...
International audienceQuantitative ultrasound (QUS) techniques for the estimation of tissue microstr...
In reflective ultrasonic imaging, some statistical parameters can be extracted from the backscattere...
Biomedical ultrasound is a prominent imaging modality for diagnostics. Conventional ultrasonic imagi...
Quantitative ultrasound (QUS) techniques that parameterize the backscattered signal power spectrum h...
Ultrasound is a medical imaging modality with many advantages, such as being real-time, portable, an...
Ultrasound is a medical imaging modality with many advantages, such as being real-time, portable, an...
International audienceQuantitative ultrasound (QUS) techniques using radiofrequency (RF) backscatter...
International audienceA mixture of homodyned K-distributions corresponding to a mixture if tissue mi...
International audienceThis chapter provides a review of the last 15 years on the use of quantitative...
International audienceUltrasonic backscattered echoes from blood contain frequency-dependent informa...
Recent studies on the statistics of the envelope of the ultrasound echo signal from a random scatter...
Ultrasound RF signal, backscattered from an inhomogeneous parenchymal tissue has the character of a ...
International audienceQuantitative ultrasound (QUS) techniques for the estimation of tissue microstr...
International audienceQuantitative ultrasound (QUS) techniques for the estimation of tissue microstr...
International audienceAn Effective Medium Theory combined with the Structure Factor Model (EMTSFM) h...
International audienceQuantitative ultrasound (QUS) techniques for the estimation of tissue microstr...
In reflective ultrasonic imaging, some statistical parameters can be extracted from the backscattere...
Biomedical ultrasound is a prominent imaging modality for diagnostics. Conventional ultrasonic imagi...
Quantitative ultrasound (QUS) techniques that parameterize the backscattered signal power spectrum h...
Ultrasound is a medical imaging modality with many advantages, such as being real-time, portable, an...
Ultrasound is a medical imaging modality with many advantages, such as being real-time, portable, an...