Characterization of a 64 channel PET detector using photodiodes for crystal identification

1997 
The authors present performance results for a prototype PET detector module consisting of 64 LSO scintillator crystals (3/spl times/3/spl times/20 mm) coupled on one end to a single photomultiplier tube and on the opposite end to a 64 pixel array of 3 mm square silicon photodiodes (typical pixel parameters are 5 pF capacitance, 300 pA dark current, and 73% quantum efficiency at 415 nm). The photomultiplier tube (PMT) provides an accurate timing pulse and energy threshold for all crystals in the module, the silicon photodiodes (PD) identify the crystal of interaction, the sum (PD+PMT) provides a total energy signal, and the PD/(PD+PMT) ratio determines the depth of interaction. With 32 of the channels instrumented, the detector module correctly identifies the crystal of interaction (where "correct" includes the adjacent 4 crystals) 79/spl plusmn/4% of the time with high detection efficiency. The timing resolution for a single LSO detector module is 750 ps fwhm, while its pulse height resolution at 511 keV is 24/spl plusmn/3% fwhm. The depth of interaction measurement resolution is 8/spl plusmn/1 mm fwhm.
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