Dosimetry and spectrometry measurements have been carried out in the thermal column of the research fast reactor RSV-TAPIRO (ENEA-Casaccia, Rome) in order to investigate its suitability for irradiation of cells or mice, with a view to research in the interests of boron neutron capture therapy (BNCT). The thermal column consists of a graphite moderator (40 cm thick) containing a lead shield (13 cm thick) in order to shield reactor background. The irradiation volume, inside this structure, has cubic shape (18 x 18 x 18 cm3). Besides measurements of fluence and dose rates in air or in phantom performed with thermoluminescence dosemeters (TLDs) and using the activation technique, dose and fluence profiles have been generated using a method based on gel dosemeters analysed with optical imaging. To check the consistency of the results, spectrometry measurements in the same irradiation volume have been performed by means of bubble detectors.

Characterisation of the TAPIRO BNCT thermal facility / G. Rosi, G. Gambarini, V. Colli, S. Gay, L. Scolari, O. Fiorani, A. Perrone, E. Nava, F. Fasolo, L. Visca, A. Zanini. - In: RADIATION PROTECTION DOSIMETRY. - ISSN 0144-8420. - 110:1-4(2004), pp. 651-654.

Characterisation of the TAPIRO BNCT thermal facility

G. Gambarini
Secondo
;
V. Colli;S. Gay;
2004

Abstract

Dosimetry and spectrometry measurements have been carried out in the thermal column of the research fast reactor RSV-TAPIRO (ENEA-Casaccia, Rome) in order to investigate its suitability for irradiation of cells or mice, with a view to research in the interests of boron neutron capture therapy (BNCT). The thermal column consists of a graphite moderator (40 cm thick) containing a lead shield (13 cm thick) in order to shield reactor background. The irradiation volume, inside this structure, has cubic shape (18 x 18 x 18 cm3). Besides measurements of fluence and dose rates in air or in phantom performed with thermoluminescence dosemeters (TLDs) and using the activation technique, dose and fluence profiles have been generated using a method based on gel dosemeters analysed with optical imaging. To check the consistency of the results, spectrometry measurements in the same irradiation volume have been performed by means of bubble detectors.
biological effects of neutrons; biomedical optical imaging; dosimetry; fission research reactors; graphite; moderators; neutron capture therapy; phantoms; thermoluminescent dosimeters
Settore FIS/01 - Fisica Sperimentale
2004
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/16600
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