Abstract Background Physiological measures per lung parenchyma, rather than per lung volume, sometimes reflect the disease status. PET images of the lung, which are usually expressed per lung volume, could confound the interpretation of the disease status, especially in cases with a prominent heterogeneity in aeration. The aim of the present study was to develop a method for measuring pulmonary blood flow (PBF) with aeration correction using 15O-H2O PET and to compare the results with those obtained using a conventional method. We obtained the voxel-based tissue fraction (TF) derived from density images converted from transmission images obtained using an external 137Cs point source. Quantitative PBF values with and without the TF were calc...
Millions of people are affected by respiratory diseases, leading to a significant health burden glob...
The topographic matching of alveolar ventilation (V̇A) and per-fusion (Q̇) is the main determinant o...
Quantification of tumor perfusion using radioactive water (H215O) and PET is a promising method for ...
Purpose It has recently been recognized that PET/CT may play a role in diffuse parenchymal lung dise...
Recently, there has been an increased interest in imaging different pulmonary disorders using PET te...
Pulmonary blood flow (PBF) is a critical determinant of oxygenation during acute lung injury (ALI). ...
Background: Absolute pulmonary blood flow (PBF) estimation may be a sensitive approach to evaluate l...
Abstract Background In vivo de...
Recently, there has been an increased interest in imaging different pulmonary disorders using PET te...
Background: In vivo determination of regional pulmonary blood flow (PBF) is a valuable tool for the ...
OBJECTIVES: Elevated pulmonary arterial pressure (PAP) induces pulmonary artery remodeling and may h...
OBJECTIVES: Elevated pulmonary arterial pressure (PAP) induces shear stress in the pulmonary artery,...
OBJECTIVES: Evaluating pulmonary blood flow (PBF) may be useful in assessing pulmonary perfusion abn...
Idiopathic pulmonary fibrosis (IPF) is a progressive disease of unknown aetiology and with a high mo...
Millions of people are affected by respiratory diseases, leading to a significant health burden glob...
Millions of people are affected by respiratory diseases, leading to a significant health burden glob...
The topographic matching of alveolar ventilation (V̇A) and per-fusion (Q̇) is the main determinant o...
Quantification of tumor perfusion using radioactive water (H215O) and PET is a promising method for ...
Purpose It has recently been recognized that PET/CT may play a role in diffuse parenchymal lung dise...
Recently, there has been an increased interest in imaging different pulmonary disorders using PET te...
Pulmonary blood flow (PBF) is a critical determinant of oxygenation during acute lung injury (ALI). ...
Background: Absolute pulmonary blood flow (PBF) estimation may be a sensitive approach to evaluate l...
Abstract Background In vivo de...
Recently, there has been an increased interest in imaging different pulmonary disorders using PET te...
Background: In vivo determination of regional pulmonary blood flow (PBF) is a valuable tool for the ...
OBJECTIVES: Elevated pulmonary arterial pressure (PAP) induces pulmonary artery remodeling and may h...
OBJECTIVES: Elevated pulmonary arterial pressure (PAP) induces shear stress in the pulmonary artery,...
OBJECTIVES: Evaluating pulmonary blood flow (PBF) may be useful in assessing pulmonary perfusion abn...
Idiopathic pulmonary fibrosis (IPF) is a progressive disease of unknown aetiology and with a high mo...
Millions of people are affected by respiratory diseases, leading to a significant health burden glob...
Millions of people are affected by respiratory diseases, leading to a significant health burden glob...
The topographic matching of alveolar ventilation (V̇A) and per-fusion (Q̇) is the main determinant o...
Quantification of tumor perfusion using radioactive water (H215O) and PET is a promising method for ...