International audienceWhen no arterial input function is available, quantification of dynamic PET images requires a previous step devoted to the extraction of a reference time-activity curve (TAC). Factor analysis is often applied for this purpose. This paper introduces a novel approach that conducts a new kind of nonlinear factor analysis relying on a compartment model, and computes the kinetic parameters of specific binding tissues jointly. To this end, it capitalizes on data-driven parametric imaging methods to provide a physical description of the underlying PET data, directly relating the specific binding with the kinetics of the non-specific binding in the corresponding tissues. This characterization is introduced into the factor anal...
Abstract - Factor analysis has been pursued as a means to decompose dynamic cardiac PET images into ...
A kinetic modelling approach for the quantification of in vivo tracer studies with dynamic positron ...
BACKGROUND: Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tra...
International audienceWhen no arterial input function is available, quantification of dynamic PET im...
To analyze dynamic positron emission tomography (PET) images, various generic multivariate data anal...
To analyze dynamic positron emission tomography (PET) images, various generic multivariate data anal...
Our goal is to quantify regional physiological processes such as blood flow and metabolism by means ...
PET enables not only visualization of the distribution of radiotracer, but also has ability to quant...
Kinetic analysis is an essential tool of Positron Emission Tomography image analysis. However it req...
In this work, we propose and test a new approach for non-linear kinetic parameters' estimation from ...
Parametric imaging is a compartmental approach that processes nuclear imaging data to estimate the s...
The goal is to quantify the fraction of tissues that exhibit specific tracer binding in dynamic brai...
The advancement of Positron Emission Tomography led the biomedical imaging into the time of function...
A kinetic modeling approach for the quantification of in vivo tracer studies with dynamic positron e...
Purpose: Factor analysis has been pursued as a means to decompose dynamic cardiac PET images into di...
Abstract - Factor analysis has been pursued as a means to decompose dynamic cardiac PET images into ...
A kinetic modelling approach for the quantification of in vivo tracer studies with dynamic positron ...
BACKGROUND: Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tra...
International audienceWhen no arterial input function is available, quantification of dynamic PET im...
To analyze dynamic positron emission tomography (PET) images, various generic multivariate data anal...
To analyze dynamic positron emission tomography (PET) images, various generic multivariate data anal...
Our goal is to quantify regional physiological processes such as blood flow and metabolism by means ...
PET enables not only visualization of the distribution of radiotracer, but also has ability to quant...
Kinetic analysis is an essential tool of Positron Emission Tomography image analysis. However it req...
In this work, we propose and test a new approach for non-linear kinetic parameters' estimation from ...
Parametric imaging is a compartmental approach that processes nuclear imaging data to estimate the s...
The goal is to quantify the fraction of tissues that exhibit specific tracer binding in dynamic brai...
The advancement of Positron Emission Tomography led the biomedical imaging into the time of function...
A kinetic modeling approach for the quantification of in vivo tracer studies with dynamic positron e...
Purpose: Factor analysis has been pursued as a means to decompose dynamic cardiac PET images into di...
Abstract - Factor analysis has been pursued as a means to decompose dynamic cardiac PET images into ...
A kinetic modelling approach for the quantification of in vivo tracer studies with dynamic positron ...
BACKGROUND: Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tra...