Title of article :
Study of a New Design of P‑N Semiconductor Detector Array for Nuclear Medicine Imaging by Monte Carlo Simulation Codes
Author/Authors :
Hajizadeh Safar، M نويسنده Department of Medical Physics, Faculty of Medicine, Mashhad University of Medical Sciences , , Ghorbani، M نويسنده Department of Medical Physics, Faculty of Medicine, Mashhad University of Medical Sciences , , Khoshkharam، S نويسنده Department of Medical Physics, Faculty of Medicine, Mashhad University of Medical Sciences , , Ashrafi، Z نويسنده Electrical Engineering Department of Imam Reza University, Mashad, Iran ,
Issue Information :
فصلنامه با شماره پیاپی سال 2014
Abstract :
Gamma camera is an important apparatus in nuclear medicine imaging. Its detection part is consists of a scintillation detector with a
heavy collimator. Substitution of semiconductor detectors instead of scintillator in these cameras has been effectively studied. In this study, it is aimed to introduce a new design of P N semiconductor detector array for nuclear medicine imaging.
A P N semiconductor detector composed of N SnO2
:F, and P NiO:Li, has been introduced through simulating with MCNPX monte carlo codes. Its sensitivity
with different factors such as thickness, dimension, and direction of emission photons were investigated. It is then used to configure a new design of an array in one dimension and study its spatial resolution for nuclear medicine imaging. One?dimension array with 39 detectors was simulated to measure a predefined linear distribution of Tc 99 m activity and its spatial resolution.
The activity distribution
was calculated from detector responses through mathematical linear optimization using LINPROG code on MATLAB software. Three
different configurations of one dimension detector array, horizontal, vertical one sided, and vertical double sided were simulated. In
all of these configurations, the energy windows of the photopeak were ± 1%.The results show that the detector response increases
with an increase of dimension and thickness of the detector with the highest sensitivity for emission photons 15 to 30° above the surface.
Horizontal configuration array of detectors is not suitable for imaging of line activity sources. The measured activity distribution with
vertical configuration array, double side detectors, has no similarity with emission sources and hence is not suitable for imaging
purposes. Measured activity distribution using vertical configuration array, single side detectors has a good similarity with sources.Therefore, it could be introduced as a suitable configuration for nuclear medicine imaging. It has been shown that using semiconductor
P N detectors such as P NiO:Li, N SnO2:F for gamma detection could be possibly applicable for design of a one dimension array
configuration with suitable spatial resolution of 2.7 mm for nuclear medicine imaging.
Journal title :
Journal of Medical Signals and Sensors (JMSS)
Journal title :
Journal of Medical Signals and Sensors (JMSS)