Accurate PET quantitation requires a matched attenuation map. Obtaining matched CT attenuation maps in the thorax is difficult due to the respiratory cycle which causes both motion and density changes. Unlike with motion, little attention has been given to the effects of density changes in the lung on PET quantitation. This work aims to explore the extent of the errors caused by pulmonary density attenuation map mismatch on dynamic and static parameter estimates. Dynamic XCAT phantoms were utilised using clinically relevant 18F-FDG and 18F-FMISO time activity curves for all organs within the thorax to estimate the expected parameter errors. The simulations were then validated with PET data from 5 patients suffering from idiopathic pulmonary...
Respiratory motion during PET can cause inaccuracies in the quantification of radiotracer uptake, wh...
Purpose It has recently been recognized that PET/CT may play a role in diffuse parenchymal lung dise...
Positron emission tomography/magnetic resonance imaging (PET/MRI) potentially offers several advanta...
Accurate PET quantitation requires a matched attenuation map. Obtaining matched CT attenuation maps ...
PET quantitation depends on the accuracy of the CT-derived attenuation correction map. In the lung, ...
Background Matched attenuation maps are vital for obtaining accurate and reproducible kinetic and st...
The effect of respiratory motion on attenuation correction in Fludeoxyglucose (18F) positron emissio...
Accurate quantification of radiopharmaceutical uptake from lung PET/CT is challenging due to large v...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
Purpose: 4D positron emission tomography and computed tomography (PET/CT) can be used to reduce moti...
The aim of the study was to investigate the influence of lung density changes as well as bone proxim...
While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolvin...
Recently, there has been an increased interest in imaging different pulmonary disorders using PET te...
Respiratory motion during PET can cause inaccuracies in the quantification of radiotracer uptake, wh...
Purpose It has recently been recognized that PET/CT may play a role in diffuse parenchymal lung dise...
Positron emission tomography/magnetic resonance imaging (PET/MRI) potentially offers several advanta...
Accurate PET quantitation requires a matched attenuation map. Obtaining matched CT attenuation maps ...
PET quantitation depends on the accuracy of the CT-derived attenuation correction map. In the lung, ...
Background Matched attenuation maps are vital for obtaining accurate and reproducible kinetic and st...
The effect of respiratory motion on attenuation correction in Fludeoxyglucose (18F) positron emissio...
Accurate quantification of radiopharmaceutical uptake from lung PET/CT is challenging due to large v...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
Purpose: 4D positron emission tomography and computed tomography (PET/CT) can be used to reduce moti...
The aim of the study was to investigate the influence of lung density changes as well as bone proxim...
While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolvin...
Recently, there has been an increased interest in imaging different pulmonary disorders using PET te...
Respiratory motion during PET can cause inaccuracies in the quantification of radiotracer uptake, wh...
Purpose It has recently been recognized that PET/CT may play a role in diffuse parenchymal lung dise...
Positron emission tomography/magnetic resonance imaging (PET/MRI) potentially offers several advanta...