MRI study of radiation effect on Fricke gel solutions

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CHRISTIANNE COBELLO CAVINATO
ANA MARIA SISTI GALANTE

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Radiation Measurements
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The quality control optimization of medical processes that use ionizing radiation in the treatment of diseases like cancer is a key element for patient safety and success of treatment. The major medical application of radiation is radiotherapy, i.e. the delivery of dose levels to well-defined target tissues of a patient with the purpose of eliminating a disease. The need of an accurate tumour-edge definition with the purpose of preserving healthy surrounding tissue demands rigorous radiation treatment planning. Dosimetric methods are used for dose distribution mapping region of interest to assure that the prescribed dose and the irradiated region are correct. The Fricke gel (FXG) is the main dosimeter that supplies visualization of the three-dimensional (3D) dose distribution. In this work the dosimetric characteristics of the modified Fricke dosimeter produced at the Radiation Metrology Centre of the Institute of Energetic and Nuclear Research (IPEN) such as gel concentration dose response dependence, xylenol orange addition influence, dose response between 5 and 50 Gy and signal stability were evaluated by magnetic resonance imaging (MRI). Using the same gel solution, breast simulators (phantoms) were shaped and absorbed dose distributions were imaged by MRI at the Nuclear Resonance Laboratory of the Physics Institute of Sao Paulo University.

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GALANTE, A.M.S.; CERVANTES, H.J.; CAVINATO, C.C.; CAMPOS, L.L.; RABBANI, S.R. MRI study of radiation effect on Fricke gel solutions. Radiation Measurements, v. 43, p. 550-553, 2008. DOI: 10.1016/j.radmeas.2007.12.011. Disponível em: http://repositorio.ipen.br/handle/123456789/5037. Acesso em: 20 Mar 2026.
Esta referência é gerada automaticamente de acordo com as normas do estilo IPEN/SP (ABNT NBR 6023) e recomenda-se uma verificação final e ajustes caso necessário.

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