Title :
Crystal optimization for a CsI(Tl)-PIN photodiode γ-ray probe by Monte Carlo method
Author :
Chavanelle, Jérôme ; Pousse, Annie ; Parmentier, Michel ; Kastler, Bruno
Author_Institution :
Lab. Imagerie Ingenierie Sante, Univ. de Franche-Comte, Besancon, France
Abstract :
Precise tumor localization with a gamma probe based on a CsI(Tl) crystal coupled to a photodiode needs to improve the energy resolution of the device. In indirect gamma detection, quality of energy resolution depends on quality of light collection. For this purpose, we developed a simulation based on the Monte Carlo method, which describes the path of visible photons produced in a scintillator crystal by a photoelectric gamma interaction at 140 keV. A set of simulations was performed in order to study the influence of crystal geometry (shape and dimensions) and side surface conditions on light collection. Amount of detected signal versus gamma photon interaction positions in the crystal was also studied. In conclusion, for a photodiode with 10 mm × 10 min sensitive area, the best compromise between amount of collected light and uniformity of response versus interaction position was obtained for a 5 mm × 5 mm parallelepipedic crystal having ground faces covered with white reflectors.
Keywords :
Monte Carlo methods; caesium compounds; gamma-ray detection; p-i-n photodiodes; patient diagnosis; CsI(Tl)-PIN photodiode γ-ray probe; Monte Carlo method; crystal geometry; crystal optimization; energy resolution; photodiode; photoelectric gamma interaction; scintillator crystal; side surface conditions; tumor localization; Energy resolution; Gamma ray detection; Gamma ray detectors; Geometry; Neoplasms; Optimization methods; Photodiodes; Photonic crystals; Probes; Solid modeling;
Conference_Titel :
Nuclear Science Symposium Conference Record, 2003 IEEE
Print_ISBN :
0-7803-8257-9
DOI :
10.1109/NSSMIC.2003.1351798