International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in order to find image markers of the tumor growth. Some pathological modifications related to the development of Hepatocellular carcinoma are simulated (flows, permeability, vascular density). Corresponding images simulated at typical acquisition phases (arterial, portal) are compared to real images. The evolution of some textural features with arterial flow is also presented
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in...
International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in...
International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in...
International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in...
International audienceWe coupled our physiological model of the liver, to a MRI simulator (SIMRI) in...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audiencePhysiological modeling is a way to better understand medical images, and to fi...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audienceThe use of quantitative imaging for the characterization of hepatic tumors in ...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...
International audienceIn this paper, we present a two-level physiological model that is able to refl...