RationalTo validate a population-based input function (PBIF) model that alleviates the need for scanning since injection time in dynamic whole-body (WBdyn) PET.MethodsThirty-seven patients with suspected/known well-differentiated neuroendocrine tumors were included (GAPETNET trial NTC03576040). All WBdyn 68Ga-DOTATOC-PET/CT acquisitions were performed on a digital PET system (one heart-centered 6 min-step followed by nine WB-passes). The PBIF model was built from 20 image-derived input functions (IDIFs) obtained from a respective number of patients’ WBdyn exams using an automated left-ventricle segmentation tool. All IDIF peaks were aligned to the median time-to-peak, normalized to patient weight and administrated activity, and then fitted ...
Purpose: This study proposed and investigated the feasibility of estimating Patlak-derived influx ra...
Background: Quantification of kinetic parameters of positron emission tomography (PET) imaging agent...
Fully quantitative PET data requires an input function (IF) for kinetic modelling that is often acqu...
RationalTo validate a population-based input function (PBIF) model that alleviates the need for scan...
Background: Accurate kinetic modeling of 18F-fluorodeoxyglucose ([18F]-FDG) positron emission tomogr...
Background: Excellent performance characteristics of the Vision Quadra PET/CT, e.g. a substantial in...
Abstract: Whole-body Patlak images can be obtained from an acquisition of first 6 min of dynamic ima...
Whole-body Patlak images can be obtained from an acquisition of first 6 min of dynamic imaging over ...
IntroductionQuantitative positron emission tomography (PET) studies of neurodegenerative diseases ty...
Background: Population-based input function (PBIF) may be a valid alternative to full blood sampling...
Additional file 2: The 120-min data PBIF based on Eq.2 + Eq.4. The PBIF was calculated using the par...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Background: Quantitative positron emission tomography (PET) scans of the brain typically require art...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Objectives: To assess how patients' dependent parameters may affect [68Ga]Ga-DOTANOC image quality a...
Purpose: This study proposed and investigated the feasibility of estimating Patlak-derived influx ra...
Background: Quantification of kinetic parameters of positron emission tomography (PET) imaging agent...
Fully quantitative PET data requires an input function (IF) for kinetic modelling that is often acqu...
RationalTo validate a population-based input function (PBIF) model that alleviates the need for scan...
Background: Accurate kinetic modeling of 18F-fluorodeoxyglucose ([18F]-FDG) positron emission tomogr...
Background: Excellent performance characteristics of the Vision Quadra PET/CT, e.g. a substantial in...
Abstract: Whole-body Patlak images can be obtained from an acquisition of first 6 min of dynamic ima...
Whole-body Patlak images can be obtained from an acquisition of first 6 min of dynamic imaging over ...
IntroductionQuantitative positron emission tomography (PET) studies of neurodegenerative diseases ty...
Background: Population-based input function (PBIF) may be a valid alternative to full blood sampling...
Additional file 2: The 120-min data PBIF based on Eq.2 + Eq.4. The PBIF was calculated using the par...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Background: Quantitative positron emission tomography (PET) scans of the brain typically require art...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Objectives: To assess how patients' dependent parameters may affect [68Ga]Ga-DOTANOC image quality a...
Purpose: This study proposed and investigated the feasibility of estimating Patlak-derived influx ra...
Background: Quantification of kinetic parameters of positron emission tomography (PET) imaging agent...
Fully quantitative PET data requires an input function (IF) for kinetic modelling that is often acqu...