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Tytuł pozycji:

Establishment and dissemination of radiological standards in the field of diagnostic radiology in India

Tytuł:
Establishment and dissemination of radiological standards in the field of diagnostic radiology in India
Autorzy:
Vinatha Sumanth Panyam
Sougata Rakshit
Sanjay Daga Dhole
Bhushankumar Jagnnath Patil
Amaren Prasanna Das
Greeshma Anantharaman Kossery
Sathian Vilippalil
Probal Chaudhury
Temat:
calibration
diagnostic radiology
free-air ionization chamber
Medical physics. Medical radiology. Nuclear medicine
R895-920
Źródło:
Journal of Medical Physics, Vol 46, Iss 1, Pp 33-40 (2021)
Wydawca:
Wolters Kluwer Medknow Publications, 2021.
Rok publikacji:
2021
Kolekcja:
LCC:Medical physics. Medical radiology. Nuclear medicine
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
0971-6203
1998-3913
Relacje:
http://www.jmp.org.in/article.asp?issn=0971-6203;year=2021;volume=46;issue=1;spage=33;epage=40;aulast=Panyam; https://doaj.org/toc/0971-6203; https://doaj.org/toc/1998-3913
DOI:
10.4103/jmp.JMP_98_20
Dostęp URL:
https://doaj.org/article/b3d3682b9d724ede91c678b120d19902  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.b3d3682b9d724ede91c678b120d19902
Czasopismo naukowe
Background: The increased use of ionizing radiation for diagnostic purpose has resulted in an increase in the world population dose. Patient dosimetry in X-ray diagnostic radiology is required to establish diagnostic reference levels (DRLs) and to assess the average dose received by organs and tissues. International bodies have recommended DRLs to be based on dosimetric quantities. Aim: To cater to the increased requirement for dosimetry in diagnostic radiology, international guidelines are provided to establish and disseminate traceable calibration for dosimeters used in X-ray diagnostic radiology. X-ray diagnostic beams established are standardized using a diagnostic range free-air ionization chamber (DFAIC) (20-150 kV). Materials and Methods: Characterization of the DFAIC and determination of the correction factors for the air kerma measurements were evaluated experimentally and by theoretical calculations. Results: The paper details the establishment of 18 diagnostic beam qualities using DFAIC along with the associated uncertainties. The overall uncertainty for the air kerma measurements was within ±0.5% at 1 sigma level. Eight diagnostic range air kerma measurements using DFAIC were compared with the medium energy primary standard FAIC (50–300 kV) maintained in the laboratory. Conclusion: The air kerma rates agreed within ±1% and are within the overall standard uncertainty of both the chambers at the time of the comparison. Dissemination to the users in the field of diagnostic radiology in the country has been carried out by calibrating their ionization chambers and solid-state detector-based instruments against the DFAIC. The methodology followed to standardize the beams using DFAIC and calibration of dosimeters is presented in this work.

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