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1.
Health Phys ; 113(4): 252-261, 2017 10.
Article in English | MEDLINE | ID: mdl-28846586

ABSTRACT

Electronic personal dosimeters (EPDs) are increasingly being used alongside conventional thermoluminescent dosimeters to measure the dose of legal record in terms of personal dose equivalent. Therefore, it is of great importance to execute performance tests of these dosimeters in photon fields of various energies and at various angles of incidence. This testing is done in order to simulate the behavior of these dosimeters in realistic multidirectional polyenergetic ionizing radiation fields. Tests of accuracy, linearity, energy response, and angular response have been performed on 10 EPDs from multiple manufacturers. Various radiation qualities have been used in the energy range from 33 keV to 1.33 MeV and for angles of incidence 0° to 80°. This research proves that many of the EPDs tested performed according to the manufacturer's specifications and the requirements of the international standards regarding personal dosimetry.


Subject(s)
Gamma Rays , Radiation Dosimeters , X-Rays , Humans , Radiation Dosimeters/standards , Radiation Exposure/statistics & numerical data , Radiation Protection , Reproducibility of Results
2.
Radiat Prot Dosimetry ; 162(1-2): 139-43, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25063785

ABSTRACT

The aim of this work was to investigate the different types of radiation detectors commonly used for radiation protection purposes as survey meters. The study was performed on survey meters that use different detectors as ionisation chamber, Geiger Mueller (GM) counter and scintillation detector. For each survey meter, energy dependence and angular response in X- and gamma-radiation fields was tested. The following commercially available survey meters were investigated: ionisation chambers Victoreen 451P, Babyline 31 and VA-J-15A, Geiger counter MRK-M87, 6150 AD6 and FAG FH 40F2 and scintillation counter 6150 ADB. As a source of gamma radiation, (137)Cs and (60)Co were used whereas X-ray radiation fields were generated using an X-ray unit. The radiation characteristics of the survey meters were mostly in compliance with references estimated by standard IEC 1017-2. However, some of them showed larger deviation at lower energies. GM counters exhibit strong energy dependence for low-energy photons.


Subject(s)
Gamma Rays , Radiation Monitoring/instrumentation , Radiation Protection/instrumentation , Radiometry , Equipment Design , Humans , Photons , Radiation Dosage , Radiation Monitoring/methods , Radiation Protection/methods , Scintillation Counting , X-Rays
3.
Radiat Prot Dosimetry ; 162(1-2): 135-8, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25063787

ABSTRACT

This work presents initial data on radiation doses in adult computed tomography (CT) in Serbia. Data were collected in terms of CT dose index (CTDIvol) and dose length product (DLP) values for head, chest and abdomen examination. The range of CTDIvol values was found to be 53-98, 11-34 and 8.5-227 mGy whereas for DLP was 803-1066, 350-845 and 1066-3078 mGy cm(-1) for head, chest and abdomen examination, respectively. Except for abdomen on one CT unit, all estimated values were in line with the reported data. This work also presents simple method on how to reduce radiation doses when scanning head. Using axial (step-and-shot) instead of helical mode and decreasing tube current-time product leads to significant dose reduction. CTDIvol was decreased by 20 % whereas DLP was reduced for a factor 2.


Subject(s)
Head/diagnostic imaging , Radiography, Abdominal , Radiography, Thoracic , Tomography, X-Ray Computed/standards , Adult , Humans , Radiation Dosage , Serbia
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