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1.
Appl Radiat Isot ; 205: 111176, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38217940

RESUMEN

A considerable focus has been paid to the production of 225Ac due to its effective therapeutic action in alpha-targeted radiotherapy. Considering the future global clinical demand, it is necessary to increase the production capacity of 225Ac. A feasibility study was conducted to investigate the production of 225Ac through neutron induced transmutation of 226Ra at the Egyptian Second Research Reactor (ETRR-2) using the MCNPX code. The calculations were carried out for 1 g of 226Ra target exposed to the highest neutron flux in the irradiation grid surrounding the reactor core. The 227Ra, 225Ra, 227Ac, and 225Ac generated activities as a function of irradiation and decay times were estimated. Our study revealed that in this non-linear production process, 39.22 MBq of pure 225Ac could be obtained after three days of irradiation, while 148.74 MBq could be obtained after fifteen days of continuous irradiation.

2.
Med Phys ; 45(6): 2667-2671, 2018 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-29659060

RESUMEN

PURPOSE: An optimized air ventilation system design for a treatment room in Heavy-ion Medical Facility is an important issue in the aspects of nuclear safety because the activated air produced in a treatment room can directly affect the medical staff and the general public in the radiation-free area. METHODS: Optimized design criteria of air ventilation system for a clinical room in 430 MeV/u carbon ion beam medical accelerator facility was performed by using a combination of MCNPX2.7.0 and CINDER'90 codes. Effective dose rate and its accumulated effective dose by inhalation and residual gamma were calculated for a normal treatment scenario (2 min irradiation for one fraction) as a function of decay time. Natural doses around the site were measured before construction and used as reference data. RESULTS: With no air ventilation system, the maximum effective dose rate was about 3 µSv/h (total dose of 90 mSv/y) and minimum 0.2 µSv/h (total dose of 6 mSv/y), which are over the legal limits for medical staff and for the general public. Although inhalation dose contribution was relatively small, it was considered seriously because of its long-lasting effects in the body. The integrated dose per year was 1.8 mSv/y in the radiation-free area with the 20-min rate of air ventilation system. CONCLUSION: An optimal air ventilation rate of 20 min is proposed for a clinical room, which also agrees with the best mechanical design value.


Asunto(s)
Arquitectura y Construcción de Instituciones de Salud , Radioterapia de Iones Pesados , Ventilación/instrumentación , Ventilación/métodos , Aire , Carbono/uso terapéutico , Diseño de Equipo , Rayos gamma/uso terapéutico , Humanos , Modelos Teóricos , Dosis de Radiación , Exposición a la Radiación/prevención & control , Protección Radiológica/instrumentación , Protección Radiológica/métodos
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