In this work, we propose and test a new approach for non-linear kinetic parameters' estimation from dynamic PET data. A technique is discussed, to derive an analytical closed-form expression of the compartmental model used for kinetic parameters' evaluation, using an auxiliary parameter set, with the aim of reducing the computational burden and speeding up the fitting of these complex mathematical expressions to noisy TACs. Two alternative algorithms based on numeric calculations are considered and compared to the new proposal. We perform a simulation study aimed at (i) assessing agreement between the proposed method and other conventional ways of implementing compartmental model fitting, and (ii) quantifying the reduction in computational ...
Abstract Background Kinetic analysis of dynamic PET data requires an accurate knowledge of available...
BACKGROUND: Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tra...
The primary goal of dynamic positron emission tomography (PET) is to quantify the physiological and ...
In this work, we propose and test a new approach for non-linear kinetic parameters' estimation from ...
Our goal is to quantify regional physiological processes such as blood flow and metabolism by means ...
Positron emission tomography (PET) is a highly quantitative imaging modality that can probe a number...
International audienceWhen no arterial input function is available, quantification of dynamic PET im...
A kinetic modelling approach for the quantification of in vivo tracer studies with dynamic positron ...
A kinetic modeling approach for the quantification of in vivo tracer studies with dynamic positron e...
We propose and test a novel approach for direct parametric image reconstruction of dynamic PET data....
Quantification of tracer kinetics is often accomplished from time-activity curves of a region of int...
The primary goal of dynamic Positron Emission Tomography (PET) is to quantify the physiological and ...
PET enables not only visualization of the distribution of radiotracer, but also has ability to quant...
Kinetic modeling is used to indirectly measure physiological parameters from dynamic positron emissi...
Dynamic positron emission tomography (PET) can monitor spatiotemporal distribution of radiotracer in...
Abstract Background Kinetic analysis of dynamic PET data requires an accurate knowledge of available...
BACKGROUND: Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tra...
The primary goal of dynamic positron emission tomography (PET) is to quantify the physiological and ...
In this work, we propose and test a new approach for non-linear kinetic parameters' estimation from ...
Our goal is to quantify regional physiological processes such as blood flow and metabolism by means ...
Positron emission tomography (PET) is a highly quantitative imaging modality that can probe a number...
International audienceWhen no arterial input function is available, quantification of dynamic PET im...
A kinetic modelling approach for the quantification of in vivo tracer studies with dynamic positron ...
A kinetic modeling approach for the quantification of in vivo tracer studies with dynamic positron e...
We propose and test a novel approach for direct parametric image reconstruction of dynamic PET data....
Quantification of tracer kinetics is often accomplished from time-activity curves of a region of int...
The primary goal of dynamic Positron Emission Tomography (PET) is to quantify the physiological and ...
PET enables not only visualization of the distribution of radiotracer, but also has ability to quant...
Kinetic modeling is used to indirectly measure physiological parameters from dynamic positron emissi...
Dynamic positron emission tomography (PET) can monitor spatiotemporal distribution of radiotracer in...
Abstract Background Kinetic analysis of dynamic PET data requires an accurate knowledge of available...
BACKGROUND: Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tra...
The primary goal of dynamic positron emission tomography (PET) is to quantify the physiological and ...