TITLE
Energy Spectra Analysis of the Four-Layer DOI Detector for the Brain PET Scanner: jPET-D4
AUTHORS
Eiji Yoshida, Keishi Kitamura, Tomoaki Tsuda, Kengo Shibuya, Taiga Yamaya, Naoko Inadama, Tomoyuki Hasegawa, and Hideo Murayama
SOURCE
NUCLEAR INSTRUMENTS AND METHODS IN PHYSICS RESEARCH A 557 (2): 664-669 FEB 15 2006
(DOI: 10.1016/j.nima.2005.11.064)

NIM_A

ABSTRACT
A depth of interaction (DOI) detector is being developed for the brain PET scanner, jPET-D4. We introduce a light output correction procedure to compensate for variations among the crystal elements in the DOI detector. Under uniform irradiation with 511 keV gamma rays, we estimate the light output of each crystal element by identifying each crystal element, and generate a look-up table (LUT) for light output correction. We evaluate the energy resolution of all crystal elements. The energy resolution of 16% is achieved after light output correction for all crystal elements. The DOI detector can correct light output variations that are related to the DOI. We analyze the crystal position dependence of the energy spectra due to inter-crystal scattering among the multiple crystal elements in the DOI detector. It is highly possible that gamma rays interacting with central crystal elements in the crystal array are absorbed by surrounding crystal elements and the Compton part of the energy spectrum is decreased. Inter-crystal scattering has less impact on the energy resolution of the DOI detector.

Fig.8

Fig. 8. Energy spectrum of each DOI layer after light output correction for all crystals.