AbstractObjectives. The hypothesis of this study was that evaluation of myocardial flow and metabolism using nitrogen-13 (N-13) ammonia kinetic modeling with dynamic positron emission tomographic (PET) imaging could identify regions of myocardial scar and viable myocardium as defined by fluorine-18 fluorodeoxyglucose (F-18 FDG) PET.Background. Uptake of most perfusion tracers depends on both perfusion and metabolic retention in tissue. This characteristic has limited their ability to differentiate myocardial scar from viable tissue. The kinetic modeling of N-13 ammonia permits quantification of blood flow and separation of the metabolic component of its uptake, which may permit differentiation of scar from viable tissue.Methods. Sixteen pat...
The Simple and Patlak models for estimating myocardial blood flow with 13N-ammonia have become attra...
Background/Introduction/Aim: Positron emission tomography (PET) is the gold standard for the quantif...
Background/Introduction/Aim: Positron emission tomography (PET) is the gold standard for the quantif...
AbstractOBJECTIVESIn this study we determined whether 13N-ammonia uptake measured late after injecti...
AbstractObjectives. This study tested the hypothesis that nonviable myocardium can be identified by ...
AbstractEvaluation of regional myocardial blood flow by conventional scintigraphic techniques is lim...
Positron emission tomography has been shown to distinguish between reversible and irreversible ische...
Measurements of resting myocardial blood flow (MBF) in patients with chronic left ventricular ischem...
Previous studies have shown that the maintenance of cell membrane integrity and metabolism requires ...
Myocardial viability and recovery of left ventricular (LV) function after revascularization is predi...
OBJECTIVE Positron emission tomography (PET) integrating assessment of perfusion with N-ammonia (NH...
N-13 ammonia mimics certain properties of microspheres. It rapidly clears from blood into myocardium...
The ability to obtain quantitative values of flow and myocardial flow reserve (MFR) has been perceiv...
Background. Both [ 13N]ammonia and [ 15O]water have been used to quantify myocardial blood flow with...
BACKGROUND. Both [13N]ammonia and [15O]water have been used to quantify myocardial blood flow with p...
The Simple and Patlak models for estimating myocardial blood flow with 13N-ammonia have become attra...
Background/Introduction/Aim: Positron emission tomography (PET) is the gold standard for the quantif...
Background/Introduction/Aim: Positron emission tomography (PET) is the gold standard for the quantif...
AbstractOBJECTIVESIn this study we determined whether 13N-ammonia uptake measured late after injecti...
AbstractObjectives. This study tested the hypothesis that nonviable myocardium can be identified by ...
AbstractEvaluation of regional myocardial blood flow by conventional scintigraphic techniques is lim...
Positron emission tomography has been shown to distinguish between reversible and irreversible ische...
Measurements of resting myocardial blood flow (MBF) in patients with chronic left ventricular ischem...
Previous studies have shown that the maintenance of cell membrane integrity and metabolism requires ...
Myocardial viability and recovery of left ventricular (LV) function after revascularization is predi...
OBJECTIVE Positron emission tomography (PET) integrating assessment of perfusion with N-ammonia (NH...
N-13 ammonia mimics certain properties of microspheres. It rapidly clears from blood into myocardium...
The ability to obtain quantitative values of flow and myocardial flow reserve (MFR) has been perceiv...
Background. Both [ 13N]ammonia and [ 15O]water have been used to quantify myocardial blood flow with...
BACKGROUND. Both [13N]ammonia and [15O]water have been used to quantify myocardial blood flow with p...
The Simple and Patlak models for estimating myocardial blood flow with 13N-ammonia have become attra...
Background/Introduction/Aim: Positron emission tomography (PET) is the gold standard for the quantif...
Background/Introduction/Aim: Positron emission tomography (PET) is the gold standard for the quantif...