Abstract Background Both cardiac and respiratory motions bias the kinetic parameters measured by dynamic PET. The aim of this study was to perform a realistic positron emission tomography-magnetic resonance (PET-MR) simulation study using 4D XCAT to evaluate the impact of MR-based motion correction on the estimation of PET myocardial kinetic parameters using PET-MR. Dynamic activity distributions were obtained based on a one-tissue compartment model with realistic kinetic parameters and an arterial input function. Realistic proton density/T1/T2 values were also defined for the MRI simulation. Two types of motion patterns, cardiac motion only (CM) and both cardiac and respiratory motions (CRM), were generated. PET sinograms were obtained by ...
A whole-body motion correction algorithm that is based on positron emission tracking (PeTrack) of fi...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
Dynamic Positron Emission Tomography (PET) enables the estimation of Myocardial Blood Flow (MBF), by...
Background: Both cardiac and respiratory motions bias the kinetic parameters measured by dynamic PET...
Cardiac motion and partial volume effects (PVE) are two of the main causes of image degradation in c...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
Respiratory motion during cardiac Positron Emission Tomography (PET) Computed Tomography (CT) imagin...
Respiratory and cardiac motion leads to image degradation in positron emission tomography (PET) stud...
Purpose: To develop a motion correction for Positron-Emission-Tomography (PET) using simultaneously ...
Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), whi...
Respiratory motion during PET acquisition may lead to blurring in resulting images and underestimati...
Patient motion due to respiration can lead to artefacts and blurring in positron emission tomography...
BACKGROUND: Dual gating is a method of dividing the data of a cardiac PET scan into smaller bins acc...
BACKGROUND: Dual gating is a method of dividing the data of a cardiac PET scan into smaller bins acc...
A whole-body motion correction algorithm that is based on positron emission tracking (PeTrack) of fi...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
Dynamic Positron Emission Tomography (PET) enables the estimation of Myocardial Blood Flow (MBF), by...
Background: Both cardiac and respiratory motions bias the kinetic parameters measured by dynamic PET...
Cardiac motion and partial volume effects (PVE) are two of the main causes of image degradation in c...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
Respiratory motion during cardiac Positron Emission Tomography (PET) Computed Tomography (CT) imagin...
Respiratory and cardiac motion leads to image degradation in positron emission tomography (PET) stud...
Purpose: To develop a motion correction for Positron-Emission-Tomography (PET) using simultaneously ...
Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), whi...
Respiratory motion during PET acquisition may lead to blurring in resulting images and underestimati...
Patient motion due to respiration can lead to artefacts and blurring in positron emission tomography...
BACKGROUND: Dual gating is a method of dividing the data of a cardiac PET scan into smaller bins acc...
BACKGROUND: Dual gating is a method of dividing the data of a cardiac PET scan into smaller bins acc...
A whole-body motion correction algorithm that is based on positron emission tracking (PeTrack) of fi...
The estimation of myocardial blood flow (MBF) in dynamic PET can be biased by many different process...
Dynamic Positron Emission Tomography (PET) enables the estimation of Myocardial Blood Flow (MBF), by...