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1.
J Appl Clin Med Phys ; 19(3): 283-290, 2018 May.
Artigo em Inglês | MEDLINE | ID: mdl-29707904

RESUMO

PURPOSE: The aim of this work is to investigate the effects of immersing EBT3 radiochromic film in water and to evaluate its contribution to the total uncertainty in dose determination. MATERIALS AND METHODS: We used 3 cm × 3 cm EBT3 radiochromic films irradiated in the range of 0-70 Gy to study the impact of water immersion on the change in net optical density. These films were placed in a water container for a period of 24 h. The net optical density was measured before (0 h) and after of the immersion in water (1, 3, 6, 12, 18, and 24 h). The absorbance spectrum of the EBT3 radiochromic film was measured at 0 h and 24 h after immersion in water. The uncertainty in dose determination due to the effects of keeping the EBT3 radiochromic film submerged in water at 0, 1, and 24 h were recorded in the red, green, and blue channels. RESULTS: We observed an increase in the net optical density as an effect on the film due to its immersion in water. The penetration of the water at the edges of the radiochromic film was observed to be a function of time during which the film remained in the water. On the other hand, the penetration of water at the edges of the film was found to be independent of irradiation dose. CONCLUSIONS: EBT3 radiochromic film is found more resistant to water penetration through the edges than its predecessors. However, there is evidence that suggest that liquid water damage the Nylon cover layer of the film by changing its optical properties. Therefore, it is recommended to build a new calibration curve for radiochromic films for a specific situation involving dose measurements in liquid water.


Assuntos
Calibragem , Dosimetria Fotográfica/instrumentação , Dosimetria Fotográfica/métodos , Umidade , Água/química , Humanos , Imersão , Doses de Radiação , Incerteza
2.
J Appl Clin Med Phys ; 19(2): 35-38, 2018 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-29377492

RESUMO

The Canadian Organization of Medical Physicists (COMP), in close partnership with the Canadian Partnership for Quality Radiotherapy (CPQR) has developed a series of Technical Quality Control (TQC) guidelines for radiation treatment equipment. These guidelines outline the performance objectives that equipment should meet in order to ensure an acceptable level of radiation treatment quality. The TQC guidelines have been rigorously reviewed and field tested in a variety of Canadian radiation treatment facilities. The development process enables rapid review and update to keep the guidelines current with changes in technology. This article contains detailed performance objectives and safety criteria for Treatment Planning Systems (TPS) for External Beam Radiotherapy.


Assuntos
Física Médica , Guias de Prática Clínica como Assunto/normas , Garantia da Qualidade dos Cuidados de Saúde/normas , Controle de Qualidade , Planejamento da Radioterapia Assistida por Computador/normas , Radioterapia/instrumentação , Radioterapia/normas , Relatório de Pesquisa , Canadá , Humanos
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