LIANA MACEDO DE OLIVEIRA
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Resumo IPEN-doc 09956 EPR dosimetry with A-type carbonated apatite powder2003 - OLIVEIRA, L.M.; RODRIGUES, L.N.Resumo IPEN-doc 10797 A-type apatite powder EPR response to photons in the therapy dose level2004 - OLIVEIRA, L.A.; RODRIGUES, L.N.; BARDELLA, L.H.Artigo IPEN-doc 08738 A-type apatite/ESR dosimetry in the therapy dose level to photons2002 - OLIVEIRA, L.M.; RODRIGUES, L.N.Artigo IPEN-doc 10297 A-type carbonated apatite/EPR dosimetry with high energy photons2003 - OLIVEIRA, L.M.; RODRIGUES, L.N.; BARDELLA, L.H.Artigo IPEN-doc 09161 The influence of unstable signals for electron spin resonance dosimetry with synthetic A-type carbonated apatite2002 - OLIVEIRA, L.M.; ROSSI, A.M.; LOPES, R.T.; RODRIGUES, L.N.Synthetic A-type carbonated apatite prepared in controlled conditions was irradiated at room temperature with 60Co gamma rays. The ESR spectrum was associated to axial CO2- and orthorhombic CO3- species. Radicals used as dose markers in biological apatites are long-lived paramagnetic species. The stability of the post-irradiation signal of A-type apatite was investigated for almost 2 years. Measurements showed variations in the spectra attributed to unstable CO3- species, which can be eliminated by thermal treatments at 100ºC for 24 h. Results indicated the potential use of an A-type carbonated apatite as a dosemeter.