Title :
Intrinsic Spatial Resolution and Parallax Correction Using Depth-Encoding PET Detector Modules Based on Position-Sensitive APD Readout
Author :
Dokhale, P.A. ; Silverman, R.W. ; Shah, K.S. ; Farrell, R. ; McClish, M.A. ; Entine, G. ; Cherry, S.R.
Author_Institution :
Radiat. Monitoring Devices Inc., Watertown, MA
Abstract :
We are developing PET detectors with depth of interaction (DOI) capability based on lutetium oxyorthosilicate (LSO) scintillator arrays coupled at both ends to position-sensitive avalanche photodiodes (PSAPDs). The detector module consists of a 5x5 block of LSO crystals (1.5times1.5times20 mm3) coupled to 8times8 mm2 PSAPDs at both ends. We present the intrinsic spatial resolution for two complete modules and the radial resolution component obtained with and without parallax correction using DOI information. DOI resolution was measured to be ~3 mm. Intrinsic spatial resolution (FWHM) averaged 1.15 mm for opposing crystal pairs. The detectors were then rotated and moved closer together consistent with a 16 cm diameter cylindrical geometry scanner. Resolution was measured at positions corresponding to a radial offset of 4.7 cm and 7 cm, with the annihilation photons incident on the detector surface at 30deg and 52deg respectively. At an angle of 52deg the intrinsic spatial resolution was degraded to 7.7 mm. By incorporating DOI information, the measured spatial resolution (FWHM) was improved to 1.8 mm. This demonstrates that approximately 90% of the resolution degradation due to the parallax error can be removed using these depth-encoding detectors for a field of view with a diameter that is 87.5% of the detector separation
Keywords :
avalanche photodiodes; image coding; image resolution; position sensitive particle detectors; positron emission tomography; scintillation counters; 1.5 mm; 16 cm; 20 mm; 8 mm; annihilation photons; cylindrical geometry scanner; depth of interaction capability; depth of the interaction resolution; depth-encoding PET detector modules; intrinsic spatial resolution; lutetium oxyorthosilicate scintillator arrays; parallax correction; position-sensitive APD readout; position-sensitive avalanche photodiodes; positron emission tomography; radial resolution component; Biomedical measurements; Degradation; Event detection; Face detection; Photonic crystals; Position sensitive particle detectors; Positron emission tomography; Sensor arrays; Solid scintillation detectors; Spatial resolution; APD; LSO; depth-of-interaction; positron emission tomography (PET); spatial resolution;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2006.882807