Title :
Finite element model based spatial linearity correction for scintillation detectors that use position sensitive avalanche photodiodes
Author :
Olcott, Peter D. ; Zhang, Jin ; Levin, Craig S. ; Habte, Frezghie ; Foudray, Angela M K
Author_Institution :
Dept. of Radiol., Stanford Univ., CA
Abstract :
We have developed a method using polynomial correction derived from a finite element model (FEM) to correct spatial linearity of scintillation detectors that use position sensitive avalanche photodiodes (PSAPD). A PSAPD is a planar avalanche photodiode with a resistive coating that allows continuous, but non-linear, positioning of scintillation light pulses over the entire active area. The spatial response of a scintillation crystal array coupled to a PSAPD shows a characteristic pincushion distortion when using a linear center of mass positioning calculation. A finite element simulation was used to derive the spatial response function for the PSAPD detector, and then used to calculate a polynomial linearity correction. We performed spatial linearity correction of several flood histograms from a 22Na point source on discrete, scored and continuous crystal arrays of lutetium orthosilicate (LSO). For discrete arrays, spatial linearity correction improves crystal segmentation by correcting the pincushion distorted peaks in the 2-D crystal positioning histogram. For continuous sheets, spatial linearity correction allows for linear positioning over the central part of the crystal array without the use of time consuming spatial calibration measurements
Keywords :
avalanche photodiodes; polynomials; position sensitive particle detectors; solid scintillation detectors; 2-D crystal positioning histogram; continuous crystal arrays; crystal segmentation; discrete crystal arrays; finite element model; flood histograms; linear positioning; mass positioning calculation; pincushion distortion; planar avalanche photodiode; polynomial correction; polynomial linearity correction; position sensitive avalanche photodiodes; scintillation crystal array; scintillation detectors; scored crystal arrays; spatial linearity correction; spatial response function; Avalanche photodiodes; Coatings; Finite element methods; Floods; Histograms; Linearity; Nonlinear distortion; Polynomials; Scintillation counters; Solid scintillation detectors;
Conference_Titel :
Nuclear Science Symposium Conference Record, 2005 IEEE
Conference_Location :
Fajardo
Print_ISBN :
0-7803-9221-3
DOI :
10.1109/NSSMIC.2005.1596839