Desarrollo e implementación de un sistema de medición para un maniquí de agua PTW en la estimación de la dosis absorbida en agua

Autores

DOI:

https://doi.org/10.15392/2319-0612.2024.2473

Palavras-chave:

Metrology and dosimetry, absorbed dose to water, dosimeter system, water phantom

Resumo

At Secondary Standard Dosimetry Laboratory (SSDL) in Venezuela is the only one in the country that performs calibrations of dosimetry systems with an IAEA water phantom. However, SSDL has a PTW water phantom, for which there is no procedure for the calibration of dosimetry systems. Therefore, a methodology was developed for its validation using a cobalt-60 equipment, a secondary standard, an IAEA water phantom and a PTW phantom. The adapter for ionization chamber type NE 2561 was studied and designed to protect it from water. The methodology consisted of calculate of absorbed dose rate to water in IAEA water phantom and PTW water phantom. Subsequently, the absorbed dose rates to water were compared between both phantoms and finally, the validation of the new procedures and their respective uncertainties was performed. The adapter of ionization chamber was built with PMMA material. Comparisons between absorbed dose rates to water showed that there is no difference between the two phantoms. The absorbed dose rate to water was calculated with the procedure updates along with their associated uncertainties, obtaining =0.13482 ± 0.00292 Gy/min. Finally, the validation obtained a value of less than 0.7%, which means that the implementation of the new procedures for the calibration of dosimetry systems is valid and applied at the SSDL-Venezuela.

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Biografia do Autor

  • Carlos Rodrígruez, Venezuelan Institute for Scientific Research

    Master in medical physics.

    Head of Nuclear Technology Unit in Venezuelan Institute for Scientific Research.

     

  • José Alexander Durán Durán, Venezuelan Institute for Scientific Research

    Industrial Engineer. 

    Head of Secondary Standard Dosimetry Laboratory in Nuclear Technology Unit. 

Referências

[1] LEAL, C., et, al. (2021). Secondary Standard Dosimetry Laboratories. Knowledge Observer, Caracas, Special Edition, p. 23-42, 2021.

[2] IAEA, WHO, PAHO and ESTRO. Absorbed dose determination in external beams radiotherapy. An international code of practice for dosimetry based on standards of absorbed dose to water. Technical reports series N° 398. IAEA, Viena, 2000.

[3] AHMED, S. N. (2007). Physics and Engineering of Radiation Detection. United States of America. Elsevier. Pag. 40. 2007.

[4] MARTIN, J. E. Physics for Radiation Protection. Third Completely Updated Edition. Alemania: Wiley-VCH Verlag & Co. KGaA, 2013.

[5] IAEA, WHO. Callibration of reference dosimeters for external beam radiotherapy. Technical reports series N° 469. IAEA, Viena, 2009.

[6] JCGM. Evaluation of measurement data. Guide to the expression of uncertainty in measurement. First Edition. España. 2008.

[7] JCGM. International Metrology Vocabulary. Fundamental and general concepts and associated terms. Third Edition. España. 2012.

[8] ISO/IEC. General requirements for the competence of testing and calibration laboratories. Second Edition, 2005.

[9] ZARETKY, A., SARAVÍ, M., STEFANIC, A., MONTAÑO, G., & VALLEJOS, M. Optimization and validation for the calibration procedure of a dosimeter for radiotherapy in air and water, in cobalt 60. Metrology Symposium. National Metrology Center. 2010.

Publicado

07-01-2025

Como Citar

Desarrollo e implementación de un sistema de medición para un maniquí de agua PTW en la estimación de la dosis absorbida en agua. Brazilian Journal of Radiation Sciences, Rio de Janeiro, Brazil, v. 12, n. 3A (Suppl.), p. e2473, 2025. DOI: 10.15392/2319-0612.2024.2473. Disponível em: https://bjrs.org.br/revista/index.php/REVISTA/article/view/2473. Acesso em: 16 jul. 2025.