Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input function (PIF). An alternative to invasive measurements from arterial sampling is an image-derived input function (IDIF). However, an IDIF provides the whole blood radioactivity concentration, rather than the required free tracer radioactivity concentration in plasma. To estimate the tracer PIF, we corrected an IDIF from the carotid artery with estimates of plasma parent fraction (PF) and plasma-to-whole blood (PWB) ratio obtained from five venous samples. We compared the combined IDIF+venous approach to gold standard data from arterial sampling in 10 healthy volunteers undergoing [18F]GE-179 brain PET imaging of the NMDA receptor. Arterial ...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
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...
peer reviewedQuantitative positron emission tomography (PET) brain studies often require an input fu...
There is a growing interest in using 18F-DPA-714 PET to study neuroinflammation and microglial activ...
Kinetic analysis of (18)F-fluorodeoxyglucose positron emission tomography data requires an accurate ...
Kinetic analysis of (18)F-fluorodeoxyglucose positron emission tomography data requires an accurate ...
INTRODUCTION: The NMDA receptor radiotracer [18F]GE-179 has been used with 90-min scans and arterial...
Introduction: Derivation of input functions directly from dynamic PET images obviates the need for a...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
Blood-based kinetic analysis of PET data relies on an accurate estimate of the arterial plasma input...
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...
peer reviewedQuantitative positron emission tomography (PET) brain studies often require an input fu...
There is a growing interest in using 18F-DPA-714 PET to study neuroinflammation and microglial activ...
Kinetic analysis of (18)F-fluorodeoxyglucose positron emission tomography data requires an accurate ...
Kinetic analysis of (18)F-fluorodeoxyglucose positron emission tomography data requires an accurate ...
INTRODUCTION: The NMDA receptor radiotracer [18F]GE-179 has been used with 90-min scans and arterial...
Introduction: Derivation of input functions directly from dynamic PET images obviates the need for a...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...
Pharmacokinetic modelling with arterial sampling is the gold standard for analysing dynamic PET data...