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Tytuł artykułu

Evaluation of effective dose and entrance skin dose in digital radiology

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Background: Ionizing radiation has an indispensable role in diagnostic radiology and clinical treatments. Apparently, medical exposure in diagnostic radiology pertains to be the preeminent man-made source of radiation.
Rocznik
Strony
119--125
Opis fizyczny
Bibliogr. 21 poz., rys., tab.
Twórcy
  • Student Research Committee Babol University of Medical Sciences Babol
  • Department of Medical Physics, Radiobiology and Radiation Protection, School of Medicine, Babol University of Medical Sciences, Babol, Iran
  • Cancer Research Center, Health Research Institute, Babol University of Medical Sciences, Babol, Iran
  • Biomedical Engineering and Medical Physics Department, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran
  • Biomedical Engineering and Medical Physics Department, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran
  • Biomedical Engineering and Medical Physics Department, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran
  • Department of Medical Physics, Radiobiology and Radiation Protection, School of Medicine, Babol University of Medical Sciences, Babol, Iran
  • Department of Medical Physics, Radiobiology and Radiation Protection, School of Medicine, Babol University of Medical Sciences, Babol, Iran
Bibliografia
  • [1] Bair W. Overview of ICRP respiratory tract model. Radiation Protection Dosimetry. 1991;38(1-3):147-152.
  • [2] Hall EJ, Brenner DJ. Cancer risks from diagnostic radiology. Br J Radiol. 2008;81(965):362-378.
  • [3] Giczi F, Pellet S, Mclean I D, Meghzifene A. Testing of the implementation of the code of practice on dosimetry in X-ray diagnostic radiology: Hungarian contribution. 2008. IRPA 12: 12. International congress of the International Radiation Protection Association (IRPA): Strengthening radiation protection worldwide, Buenos Aires (Argentina), 19-24 Oct 2008
  • [4] Ross BC, Dixon DW. Exposure to radon in above ground workplaces the experience in great britain (GB). In: 8. International congress of the International Radiation Protection Association (IRPA8). 1992.
  • [5] Pahade JK, Trout AT, Zhang B, et al. What patients want to know about imaging examinations: a multiinstitutional us survey in adult and pediatric teaching hospitals on patient preferences for receiving information before radiologic examinations. Radiology. 2018;287(2):554-562.
  • [6] Beir VII, Health risks from exposure to low levels of ionizing radiation. The National Academies report in brief, National Academies Press (NAP); 2005.
  • [7] Mettler F, Radiological risks associated with the various uses of radiation in medicine within the context of their associated benefits. In: Radiological Protection of Patients in Diagnostic and Interventional Radiology, Nuclear Medicine and Radiotherapy (NMR); Proceedings of an international conference held in Málaga,Spain, 26–30 March 2001. p. 119-127.
  • [8] Ofori K, Gordon SW, Akrobortu E, et al. Estimation of adult patient doses for selected X-ray diagnostic examinations. Journal of Radiation Research and Applied Sciences. 2014;7(4):459-462.
  • [9] Ciraj O, Markovic S, Kosutic D. First results on patient dose measurements from conventional diagnostic radiology procedures in Serbia and Montenegro. Radiation Protection Dosimetry. 2005;113(3):330-335.
  • [10] Khoshdel-Navi D, Shabestani-Monfared A, Deevband MR, et al. Local-Reference patient dose evaluation in conventional radiography examinations in Mazandaran, Iran. Journal of Biomedical Physics & Engineering. 2016;6(2):61-70.
  • [11] Mohsenzadeh B, Deevband MR, Pouriran R. The national diagnostic Reference Level in Routine Digital Radiography Examinations in Iran. Biomedical Journal. 2016;7(5):6183-6192.
  • [12] Zoetelief J, Dance DR, Drexler G, et al. Patient dosimetry for X-rays used in medical imaging. J ICRU. 2005;5(2):1-113.
  • [13] AlSuwaidi JS, AIMazrouei NK, Pottybindu S. Patient dose monitoring in Dubai in radiography and interventional procedures. Annals of the ICRP. 2015;44(1 Suppl):249-258.
  • [14] Vano , Fernandez JM, Ten JI, et al. Transition from screen-film to digital radiography: evolution of patient radiation doses at projection radiography. Radiology. 2007;243(2):461-466.
  • [15] Karami V, Zabihzadeh M, Shams N, et al. Optimization of Radiological Protection in Pediatric Patients Undergoing Common Conventional Radiological Procedures: Effectiveness of Increasing the Film to Focus Distance (FFD). International Journal of Pediatrics. 2017;5(4):4771-4782.
  • [16] Balonov MI, Shrimpton PC. Effective dose and risks from medical x-ray procedures. Annals of the ICRP. 2012;41(3-4):129-141.
  • [17] Sulieman A, Elhag B, Alkhorayef M, et al. Estimation of effective dose and radiation risk in pediatric barium studies procedures. Applied Radiation and Isotopes. 2018;138:40-44.
  • [18] Kutanzi K, Lumen A, Koturbash I, Miousse IR. Pediatric exposures to ionizing radiation: carcinogenic considerations. International Journal of Environmental Research and Public Health. 2016;13(11):1057.
  • [19] Nahangi H, Chaparian A. Assessment of radiation risk to pediatric patients undergoing conventional X-ray examinations. Radioprotection. 2015;50(1):19-25.
  • [20] Kiljunen T, Tietavainen A, Parvainen T, et al. Organ doses and effective doses in pediatric radiography: patient-dose survey in Finland. Acta Radiologica. 2009;50(1):114-124.
  • [21] Osei EK , Darko J. A survey of organ equivalent and effective doses from diagnostic radiology procedures. ISRN Radiology. 2012;2013:204346.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0628bdaf-5790-497e-956a-8324ca23158d
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