The optimization of a whole-body PET system remains a challenging task, as the imaging performance is influenced by a complex interaction of different design parameters. However, it is not always clear which parameters have the largest impact on image quality and are most eligible for optimization. To determine this, we need to be able to assess their influence on image quality. We performed Monte-Carlo simulations of a whole-body PET scanner to predict the influence on image quality of three detector parameters: the TOF resolution, the transverse pixel size and depth-of-interaction (DOI)-correction. The inner diameter of the PET scanner was 65 cm, small enough to allow physical integration into a simultaneous PET-MR system. Point sources w...
Background The technology of modern positron emission tomography (PET) systems continuously improvin...
We have recently built and characterized the performance of a monolithic scintillator detector based...
Positron Emission Tomography (PET) provides in vivo functional information about a living subject by...
The optimization of a whole-body PET system remains a challenging task, as the imaging performance i...
Simultaneous PET-MR scanners are being developed for whole body imaging. These systems require compa...
We studied the resolution limit that can be obtained for a whole body PET scanner. The results were ...
The current positron emission tomography (PET) design is aimed toward establishing an entire-body PE...
This paper investigates the benefit of depth-of-interaction (DOI) information in a time-of-flight (T...
<p>Positron emission tomography (PET) is a nuclear medicine diagnostic imaging exam of metabolic pro...
Parallax error caused by the detector crystal thickness degrades spatial resolution at the periphera...
[Purpose] Depth-of-interaction (DOI) detection is a promising solution to improve the spatial resolu...
Conventional PET scanners can image the whole body using many bed positions. On the other hand, an e...
We have recently built and characterized the performance of a monolithic scintillator detector based...
Much research effort is being made to increase the sensitivity and improvethe imaging performance of...
Objectives: Whole-body FDG-PET plays key roles in detection, staging, and characterization of malign...
Background The technology of modern positron emission tomography (PET) systems continuously improvin...
We have recently built and characterized the performance of a monolithic scintillator detector based...
Positron Emission Tomography (PET) provides in vivo functional information about a living subject by...
The optimization of a whole-body PET system remains a challenging task, as the imaging performance i...
Simultaneous PET-MR scanners are being developed for whole body imaging. These systems require compa...
We studied the resolution limit that can be obtained for a whole body PET scanner. The results were ...
The current positron emission tomography (PET) design is aimed toward establishing an entire-body PE...
This paper investigates the benefit of depth-of-interaction (DOI) information in a time-of-flight (T...
<p>Positron emission tomography (PET) is a nuclear medicine diagnostic imaging exam of metabolic pro...
Parallax error caused by the detector crystal thickness degrades spatial resolution at the periphera...
[Purpose] Depth-of-interaction (DOI) detection is a promising solution to improve the spatial resolu...
Conventional PET scanners can image the whole body using many bed positions. On the other hand, an e...
We have recently built and characterized the performance of a monolithic scintillator detector based...
Much research effort is being made to increase the sensitivity and improvethe imaging performance of...
Objectives: Whole-body FDG-PET plays key roles in detection, staging, and characterization of malign...
Background The technology of modern positron emission tomography (PET) systems continuously improvin...
We have recently built and characterized the performance of a monolithic scintillator detector based...
Positron Emission Tomography (PET) provides in vivo functional information about a living subject by...