As small animal PET scanners are continuously improving in their performances, one is lead to the question of how far can spatial resolution go. In this paper we address the limiting effects to spatial resolution and whether the photoelectric interaction, and therefore high Z materials, outperform medium Z scintillators. In particular, with a Monte Carlo simulation, we compare the ultimate performances, in spatial resolution, of three scintillators: BGO, NaI(Tl) and YAP:Ce. BGO is the PET scintillator which has the highest photofraction whereas YAP:Ce has the lowest. NaI(Tl), instead is a relatively high Z but low density scintillator. There are three principle contributions to the degradation of spatial resolution: multiple Compton scatter...
The light distribution along one edge of a PET scintillation crystal was investigated with a Monte C...
Using the small animal hybrid PET/SPECT scanner YAP-(S)PET we demonstrate how we can improve both im...
The detection of depth-of-interaction (DOI) is essential to achieve both high spatial resolution and...
As small animal positron emission tomography (PET) scanners are continuously improving in their perf...
As small animal positron emission tomography (PET) scanners are continuously improving in their perf...
The development of dedicated small animal PET (positron emission tomography) scanners has led to sig...
Biomedical research using animal models of metabolism and disease mechanisms demands a very high res...
Positron emission tomography (PET) is a technique for imaging the 3-dimensional distribution of radi...
There have been impressive improvements in the performance of small-animal positron emission tomogra...
A small animal positron emission tomography (PET) instrument using a high-resolution solid-state det...
Like most applications that utilize scintillators for gamma detection, Positron Emission Tomography ...
A key component of a PET system is the detection of the coincident gamma rays associated with positr...
We propose a small-animal PET scanner design combining two sets of monolithic crystals with two diff...
A key component of a PET system is the detection of the coincident gamma rays associated with positr...
Using the small animal hybrid PET/SPECT scanner YAP-(S)PET we demonstrate how we can improve both im...
The light distribution along one edge of a PET scintillation crystal was investigated with a Monte C...
Using the small animal hybrid PET/SPECT scanner YAP-(S)PET we demonstrate how we can improve both im...
The detection of depth-of-interaction (DOI) is essential to achieve both high spatial resolution and...
As small animal positron emission tomography (PET) scanners are continuously improving in their perf...
As small animal positron emission tomography (PET) scanners are continuously improving in their perf...
The development of dedicated small animal PET (positron emission tomography) scanners has led to sig...
Biomedical research using animal models of metabolism and disease mechanisms demands a very high res...
Positron emission tomography (PET) is a technique for imaging the 3-dimensional distribution of radi...
There have been impressive improvements in the performance of small-animal positron emission tomogra...
A small animal positron emission tomography (PET) instrument using a high-resolution solid-state det...
Like most applications that utilize scintillators for gamma detection, Positron Emission Tomography ...
A key component of a PET system is the detection of the coincident gamma rays associated with positr...
We propose a small-animal PET scanner design combining two sets of monolithic crystals with two diff...
A key component of a PET system is the detection of the coincident gamma rays associated with positr...
Using the small animal hybrid PET/SPECT scanner YAP-(S)PET we demonstrate how we can improve both im...
The light distribution along one edge of a PET scintillation crystal was investigated with a Monte C...
Using the small animal hybrid PET/SPECT scanner YAP-(S)PET we demonstrate how we can improve both im...
The detection of depth-of-interaction (DOI) is essential to achieve both high spatial resolution and...