Khoshakhlagh Mohammad, Islamian Jalil Pirayesh, Abedi Mohammad, Mahmoudian Babak, Mardanshahi Ali Reza
Immunology Research Center, Tabriz University of Medical Sciences, Sari, Iran.
Department of Medical Physics, Faculty of Medicine Tabriz University of Medical Sciences, Tabriz, Iran.
World J Nucl Med. 2016 Jan-Apr;15(1):12-7. doi: 10.4103/1450-1147.167588.
The detector is a critical component of the single photon emission computed tomography (SPECT) imaging system for giving accurate information from the exact pattern of radionuclide distribution in the target organ. The SIMIND Monte Carlo program was utilized for the simulation of a Siemen's dual head variable angle SPECT imaging system with a low energy high resolution (LEHR) collimator. The Planar and SPECT scans for a (99m)Tc point source and a Jaszczak Phantom with the both experiment and simulated systems were prepared and after verification and validation of the simulated system, the similar scans of the phantoms were compared (from the point of view of the images' quality), namely, the simulated system with the detectors including bismuth germanate (BGO), yttrium aluminum garnet (YAG:Ce), Cerium-doped yttrium aluminum garnet (YAG:Ce), yttrium aluminum perovslite (YAP:Ce), lutetium aluminum garnet (LuAG:Ce), cerium activated lanthanum bromide (LaBr3), cadmium zinc telluride (CZT), and sodium iodide activated with thallium [NaI(Tl)]. The parameters of full width at half maximum (FWHM), energy and special resolution, sensitivity, and also the comparison of images' quality by the structural similarity (SSIM) algorithm with the Zhou Wang and Rouse/Hemami methods were analyzed. FWHMs for the crystals were calculated at 13.895, 14.321, 14.310, 14.322, 14.184, and 14.312 keV and the related energy resolutions obtained 9.854, 10.229, 10.221, 10.230, 10.131, and 10.223 %, respectively. Finally, SSIM indexes for comparison of the phantom images were calculated at 0.22172, 0.16326, 0.18135, 0.17301, 0.18412, and 0.20433 as compared to NaI(Tl). The results showed that BGO and LuAG: Ce crystals have high sensitivity and resolution, and better image quality as compared to other scintillation crystals.
探测器是单光子发射计算机断层扫描(SPECT)成像系统的关键部件,用于从目标器官中放射性核素分布的确切模式给出准确信息。SIMIND蒙特卡罗程序用于模拟带有低能高分辨率(LEHR)准直器的西门子双头可变角度SPECT成像系统。针对(99m)Tc点源和Jaszczak体模,分别使用实验系统和模拟系统进行了平面和SPECT扫描。在对模拟系统进行验证和确认后,比较了体模的类似扫描(从图像质量的角度),即模拟系统中包含锗酸铋(BGO)、钇铝石榴石(YAG:Ce)、掺铈钇铝石榴石(YAG:Ce)、钇铝钙钛矿(YAP:Ce)、镥铝石榴石(LuAG:Ce)、铈激活溴化镧(LaBr3)、碲化镉锌(CZT)以及碘化钠铊激活[NaI(Tl)]的探测器。分析了半高宽(FWHM)、能量和空间分辨率、灵敏度等参数,以及采用周王和劳斯/赫马米方法通过结构相似性(SSIM)算法对图像质量进行的比较。计算出晶体的FWHM分别为13.895、14.321、14.310、14.322、14.184和14.312 keV,相关的能量分辨率分别为9.854%、10.229%、10.221%、10.230%、10.131%和10.223%。最后,与NaI(Tl)相比,计算出体模图像比较的SSIM指数分别为0.22172、0.16326、0.18135、0.17301、0.18412和0.20433。结果表明,与其他闪烁晶体相比,BGO和LuAG:Ce晶体具有高灵敏度和分辨率,以及更好的图像质量。