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Projects source: E-CRIS

Joint research of measurements and effects of ionizing and UV radiation in medicine and environmental protection

Research activity

Code Science Field
B140  Biomedical sciences  Clinical physics, radiology, tomography, medical instrumentation 
P002  Natural sciences and mathematics  Physics 
P265  Natural sciences and mathematics  Semiconductory physics 
T171  Technological sciences  Microelectronics 
Keywords
Radiation dosimeters, UV dosimeter, Monte-Carlo simulation, luminescent materials, risk assessment
Organisations (11) , Researchers (2)
0107  University of Nis, Faculty of Electronic Engineering
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  09702  PhD Goran S. Ristić  Physics  Head  2011 - 2019  28 
0016  University of Belgrade, Faculty of Technology and Metallurgy
0032  University of Belgrade, Technical Faculty
0033  University of Novi Sad, Faculty of Philosophy
0038  University of Novi Sad, Faculty of Technical Sciences
0074  University of Kragujevac, Faculty of Science
0099  University of Nis, Faculty of Medicine
0113  University of Niš, Faculty of Occupational Safety
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  12049  PhD Darko N. Zigar  Environmental technology, pollution control  Researcher  2011 - 2019  63 
0116  University of Nis, Faculty of Civil Engineering and Architecture
0117  University of Nis, Faculty of Sciences and Mathematics
0121  University of Nis, Faculty of Philosophy
Abstract
The proposed project is a combination of basic, applied and developmental research in the fields of measurement and effects of radiation and radiological protection. A range of radiation dosimeters (RADFETs, gas filled dosimeters, RL/TL/OSL dosimeters, UV dosimeters) will be investigated and a radiological health study performed. The project will be executed by an experienced multidisciplinary team with the following main objectives: 1) RADFET dosimeters: understanding of physical mechanisms underlying device operation, technology optimization, portable reader prototype; 2) Gas filled dosimeters: understanding of processes in gases at low pressure, system for monitoring of the memory effect; 3) RL/TL/OSL dosimeters: understanding of physical properties of luminiscent materials, RL dosimeter prototype, TL/OSL reader prototype; 4) UV dosimeters: optimization of materials used in UV dosimetry, dosimeter prototype; 5) Radiological health study: understanding of geopathological influences of natural radionuclides, dose estimation and risk assessment for epidimilogical studies of carcinoma incidence and risk assessment of ocupationally exposed persons. Experimental approaches combined with Monte Carlo simulations will be used to get the fundamental knowledge and technical expertise needed for development of the dosimeter prototypes. The results of the studies will be published in leading international journals.
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