Title :
A Dual-Layer TOF-DOI Detector Block for Whole-Body PET
Author :
Liu, Shitao ; An, Shaohui ; Li, Hongdi ; Wang, Chao ; Ramirez, Rocio A. ; Zhang, Yuxuan ; Baghaei, Hossain ; Wong, Wai-Hoi
Author_Institution :
Dept. of Exp. Diagnostic Imaging, Univ. of Texas M. D. Anderson Cancer Center, Houston, TX, USA
Abstract :
We developed a dual-layer high-resolution detector block for whole-body positron-emission tomography systems. The top layer is a 13 × 13 array of lutetium yttrium orthosilicate (LYSO) crystals (2.85 × 2.85 × 10 mm3 ) and the bottom layer a 13 × 13 array of lutetium gadolinium oxyorthosilicate (LGSO) crystals (2.85 2.85 10 mm3 ). The LGSO layer was coupled to four Hamamatsu R11194HA photomultiplier tubes (PMTs) by a photomultiplier quadrant-sharing configuration. This block has both time-of-flight and depth-of-interaction functions. Using a Na-22 point source, the performance of this block was evaluated by coinciding with a reference detector which consisted of a 4 × 4 × 10 mm3 LYSO crystal coupled to a Hamamatsu R9779 PMT. A total of 4.7% of the counts were mixed among the two layers. The LYSO layer had 11.4% energy resolution and 329 ps coincidence time resolution against the reference detector. The LGSO layer had 14.8% energy resolution and 356 ps coincidence time resolution against the reference detector.
Keywords :
gadolinium compounds; lutetium compounds; photodetectors; photomultipliers; positron emission tomography; yttrium compounds; Hamamatsu R11194HA photomultiplier tubes; Hamamatsu R9779 PMT; Lu2Y2SiO5-Lu2Gd2SiO5; Na-22 point source; coincidence time resolution; depth-of-interaction functions; dual-layer TOF-DOI detector block; dual-layer high-resolution detector block; energy resolution; lutetium gadolinium oxyorthosilicate crystal array; lutetium yttrium orthosilicate crystal array; photomultiplier quadrant-sharing configuration; time 329 ps; time-of-flight functions; whole-body PET; whole-body positron-emission tomography systems; Arrays; Crystals; Decoding; Detectors; Energy resolution; Lutetium; Positron emission tomography; Depth of interaction (DOI); lutetium gadolinium oxyorthosilicate (LGSO); lutetium yttrium orthosilicate (LYSO); photomultiplier quadrant sharing (PQS); positron emission tomography (PET); time of flight (TOF);
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2012.2210053