Title :
Synchrotron radiation experiments for phosphors radiation detectors
Author :
Yoon, Kyoung-Jun ; Park, Ji-Koon ; Kang, Sang-Sik ; Cho, Sung-Ho ; Shin, Jung-wook ; Hyung-Won ; Nam, Sang-hee
Author_Institution :
Med. Imaging Res. Center, Inje Univ., Kimhae, South Korea
Abstract :
In this paper, the comparative performance of high-resolution phosphors using CCD (Charge Coupled Device) and CMOS (Complementary Metal Oxide Semiconductor) sensors for synchrotron radiation imaging is reported. Various phosphor films (ZnS [Cu, Al], ZnS [Ag, Al], Y2O2S [Tb], BiTiO3) are deposited on glass substrates using printing techniques. The phosphor plates used were 5 μm, 10 μm, 15 μm, and 20 μm thick, respectively. To investigate the luminescent properties of phosphor plates, the excitation and photoluminescence spectra were measured. The 20 line-pair test pattern images were obtained and evaluated by calculating the modulation transfer function (MTF). From the experimental results, it was concluded that the thicker the phosphor plates, the better the luminescent efficiency of X-ray-induced light photons. The phosphor thickness, however, decreases the MTF due to light blurring. ZnS (Cu, Al) phosphor of 15 μm thickness had a maximum value of 0.8 at 5 lp/mm.
Keywords :
CCD image sensors; CMOS image sensors; aluminium; bismuth compounds; copper; diagnostic radiography; optical transfer function; particle detectors; phosphors; photoluminescence; silver; synchrotron radiation; terbium; yttrium compounds; zinc compounds; 10 micron; 15 micron; 20 micron; 5 micron; BiTiO3; CCD; CMOS; X-ray-induced light photons; Y2O2S:Tb; ZnS:Ag, Al; ZnS:Cu, Al; charge coupled device; complementary metal oxide semiconductor sensors; high-resolution phosphors; light blurring; luminescent efficiency; luminescent properties; modulation transfer function; phosphor films; phosphor plates; phosphors radiation detectors; photoluminescence spectra; printing techniques; synchrotron radiation imaging; CMOS image sensors; Charge coupled devices; Charge-coupled image sensors; Glass; High-resolution imaging; Phosphors; Radiation detectors; Semiconductor films; Synchrotron radiation; Zinc compounds;
Conference_Titel :
Enterprise networking and Computing in Healthcare Industry, 2005. HEALTHCOM 2005. Proceedings of 7th International Workshop on
Print_ISBN :
0-7803-8940-9
DOI :
10.1109/HEALTH.2005.1500480