While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolving, little work has been performed on time of flight (TOF) image quality at high time resolution in the presence of modelling inconsistencies. This works focuses on the effect of using the wrong attenuation map in the system model, causing perturbations in the reconstructed radioactivity image. Previous work has usually considered the effects to be local to the area where there is attenuation mismatch, and has shown that the quantification errors in this area tend to reduce with improved time resolution. This publication shows however that errors in the PET image at a distance from the mismatch increase with time resolution. The errors depend ...
In positron emission tomography (PET), attenuation correction is typically done based on information...
International audiencePhoton time-of-flight information increases the effective sensitivity of time-...
Time-of-flight (TOF) PET data provide an effective means for attenuation correction (AC) when no (or...
While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolvin...
© 2020 Institute of Physics and Engineering in Medicine. While the pursuit of better time resolution...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Time-of-flight (TOF) PET/MR imaging is an emerging imaging technology with great capabilities offere...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Purpose To evaluate the magnitude and anatomic extent of the artifacts introduced on positron emissi...
Joint activity and attenuation reconstruction methods from time of flight (TOF) positron emission to...
Background: Time-of-Flight (TOF) is a leading technological development of Positron Emission Tomogra...
In positron emission tomography (PET), attenuation correction is typically done based on information...
TOF PET imaging requires specific calibrations: accurate characterization of the system timing resol...
The effect of respiratory motion on attenuation correction in Fludeoxyglucose (18F) positron emissio...
Previously, maximum-likelihood methods have been proposed to jointly estimate the activity image and...
In positron emission tomography (PET), attenuation correction is typically done based on information...
International audiencePhoton time-of-flight information increases the effective sensitivity of time-...
Time-of-flight (TOF) PET data provide an effective means for attenuation correction (AC) when no (or...
While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolvin...
© 2020 Institute of Physics and Engineering in Medicine. While the pursuit of better time resolution...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Time-of-flight (TOF) PET/MR imaging is an emerging imaging technology with great capabilities offere...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Purpose To evaluate the magnitude and anatomic extent of the artifacts introduced on positron emissi...
Joint activity and attenuation reconstruction methods from time of flight (TOF) positron emission to...
Background: Time-of-Flight (TOF) is a leading technological development of Positron Emission Tomogra...
In positron emission tomography (PET), attenuation correction is typically done based on information...
TOF PET imaging requires specific calibrations: accurate characterization of the system timing resol...
The effect of respiratory motion on attenuation correction in Fludeoxyglucose (18F) positron emissio...
Previously, maximum-likelihood methods have been proposed to jointly estimate the activity image and...
In positron emission tomography (PET), attenuation correction is typically done based on information...
International audiencePhoton time-of-flight information increases the effective sensitivity of time-...
Time-of-flight (TOF) PET data provide an effective means for attenuation correction (AC) when no (or...