The current positron emission tomography (PET) design is aimed toward establishing an entire-body PET scanner. An entire-body PET scanner is a scanner whose axial field of view (FOV) covers the whole body of a patient, whereas whole-body PET scanner can be of any axial FOV length, but was designed for a whole-body scan. Despite its high production cost, an entire-body depth-of-interaction PET scanner offers many benefits, such as shorter and dynamic PET time acquisition, as well as higher sensitivity and count rate performance. This PET scanner may be cost-effective for clinical PET scanners with high scan throughput. In this work, we evaluated the sensitivity and count rate performance of a 2-m-long PET scanner with conventional data acqui...
The NEMA NU-2 standard describes a protocol for measurement of scatter fraction (SF) using an axiall...
One of the directions in today's development of PET scanners is to increase their axial field of vie...
Monte Carlo (MC) simulations are widely used in positron emission tomography (PET) for optimizing de...
Conventional PET scanners can image the whole body using many bed positions. On the other hand, an e...
Much research effort is being made to increase the sensitivity and improvethe imaging performance of...
The optimization of a whole-body PET system remains a challenging task, as the imaging performance i...
The emergence of long axial field-of-view (FOV) total-body positron emission tomography (PET) system...
Simultaneous PET-MR scanners are being developed for whole body imaging. These systems require compa...
A conventional PET scanner has a 15–25 cm axial field-of-view (FOV) and images a whole body us...
A conventional PET scanner has a 15-25 cm axial field-of-view (FOV) and images a whole body using ab...
The EXPLORER project aims to build a 2 meter long total-body PET scanner, which will provide extreme...
We studied the resolution limit that can be obtained for a whole body PET scanner. The results were ...
Organ-specific PET scanners have been developed to provide both high spatial resolution and sensitiv...
A whole body counter (WBC) is used for checking radioactive contamination of human subjects in a rad...
Background. Alongside the benefits of Total-Body imaging modalities, such as higher sensitivity, sin...
The NEMA NU-2 standard describes a protocol for measurement of scatter fraction (SF) using an axiall...
One of the directions in today's development of PET scanners is to increase their axial field of vie...
Monte Carlo (MC) simulations are widely used in positron emission tomography (PET) for optimizing de...
Conventional PET scanners can image the whole body using many bed positions. On the other hand, an e...
Much research effort is being made to increase the sensitivity and improvethe imaging performance of...
The optimization of a whole-body PET system remains a challenging task, as the imaging performance i...
The emergence of long axial field-of-view (FOV) total-body positron emission tomography (PET) system...
Simultaneous PET-MR scanners are being developed for whole body imaging. These systems require compa...
A conventional PET scanner has a 15–25 cm axial field-of-view (FOV) and images a whole body us...
A conventional PET scanner has a 15-25 cm axial field-of-view (FOV) and images a whole body using ab...
The EXPLORER project aims to build a 2 meter long total-body PET scanner, which will provide extreme...
We studied the resolution limit that can be obtained for a whole body PET scanner. The results were ...
Organ-specific PET scanners have been developed to provide both high spatial resolution and sensitiv...
A whole body counter (WBC) is used for checking radioactive contamination of human subjects in a rad...
Background. Alongside the benefits of Total-Body imaging modalities, such as higher sensitivity, sin...
The NEMA NU-2 standard describes a protocol for measurement of scatter fraction (SF) using an axiall...
One of the directions in today's development of PET scanners is to increase their axial field of vie...
Monte Carlo (MC) simulations are widely used in positron emission tomography (PET) for optimizing de...