Biokinetic analysis of tissue boron (10B) concentrations of glioma patients treated with BNCT in Finland
Autor: | Leena Kankaanranta, Iiro Auterinen, Heikki Joensuu, Hanna Koivunoro, Sauli Savolainen, Martti Kulvik, Tiina Seppälä, Eero Hippeläinen, Juha Laakso |
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Rok vydání: | 2015 |
Předmět: |
chemistry.chemical_element
Context (language use) dose calculation Recurrent Glioma glioma Glioma medicine Neutron irradiation Boron ta116 Whole blood ta212 ta3126 Radiation ta114 medicine.diagnostic_test business.industry 10B biodistribution medicine.disease BPA PET chemistry Positron emission tomography BNCT Nuclear medicine business Glioblastoma |
Zdroj: | Koivunoro, H, Hippeläinen, E, Auterinen, I, Kankaanranta, L, Kulvik, M, Laakso, J, Seppälä, T, Savolainen, S & Joensuu, H 2015, ' Biokinetic analysis of tissue boron (10B) concentrations of glioma patients treated with BNCT in Finland ', Applied Radiation and Isotopes, vol. 106, pp. 189-194 . https://doi.org/10.1016/j.apradiso.2015.08.014 Europe PubMed Central |
ISSN: | 0969-8043 |
Popis: | A total of 98 patients with glioma were treated with BPA-F-mediated boron neutron capture therapy (BNCT) in Finland from 1999 to 2011. Thirty-nine (40%) had undergone surgery for newly diagnosed glioblastoma and 59 (60%) had malignant glioma recurrence after surgery. In this study we applied a closed 3-compartment model based on dynamic (18)F-BPA-PET studies to estimate the BPA-F concentrations in the tumor and the normal brain with time. Altogether 22 patients with recurrent glioma, treated within the context of a clinical trial, were evaluated using their individual measured whole blood (10)B concentrations as an input to the model. The delivered radiation doses to tumor and the normal brain were recalculated based on the modeled (10)B concentrations in the tissues during neutron irradiation. The model predicts from -7% to +29% (average, +11%) change in the average tumor doses as compared with the previously estimated doses, and from 17% to 61% (average, 36%) higher average normal brain doses than previously estimated due to the non-constant tumor-to-blood concentration ratios and considerably higher estimated (10)B concentrations in the brain at the time of neutron irradiation. |
Databáze: | OpenAIRE |
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