OpenDose: open access resources for nuclear medicine dosimetry

Background: Radiopharmaceutical dosimetry depends on the localization in space and time of radioactive sources and requires the estimation of the amount of energy emitted by the sources deposited within targets. In particular, when computing resources are not accessible, this task can be carried out...

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Published inThe Journal of nuclear medicine (1978)
Main Authors Chauvin, Maxime, Borys, Damian, Botta, Francesca, Bzowski, Pawel, Dabin, Jérémie, Denis-Bacelar, Ana M, Desbrée, Aurélie, Falzone, Nadia, Lee, Boon Quan, Mairani, Andrea, Malaroda, Alessandra, Mathieu, Gilles, Mckay, Erin, Mora-Ramirez, Erick, Robinson, Andrew P, Sarrut, David, Struelens, Lara, Gil, Alex Vergara, Bardiès, Manuel
Format Journal Article
LanguageEnglish
Published Society of Nuclear Medicine 13.03.2020
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Abstract Background: Radiopharmaceutical dosimetry depends on the localization in space and time of radioactive sources and requires the estimation of the amount of energy emitted by the sources deposited within targets. In particular, when computing resources are not accessible, this task can be carried out using precomputed tables of Specific Absorbed Fractions (SAFs) or S values based on dosimetric models. The OpenDose collaboration aims to generate and make freely available a range of dosimetric data and tools. Methods: OpenDose brings together resources and expertise from 18 international teams to produce and compare traceable dosimetric data using 6 of the most popular Monte Carlo codes in radiation transport (EGSnrc/EGS++, FLUKA, GATE, Geant4, MCNP/MCNPX and PENELOPE). SAFs are uploaded, together with their associated statistical uncertainties, in a relational database. S values are then calculated from mono-energetic SAFs, based on the radioisotope decay data presented in the International Commission on Radiological Protection (ICRP) publication 107. Results: The OpenDose collaboration produced SAFs for all source regions and targets combinations of the two ICRP 110 adult reference models. SAFs computed from the different Monte Carlo codes were in good agreement at all energies, with standard deviations below individual statistical uncertainties. Calculated S values were in good agreement with OLINDA 2 (commercial) and IDAC 2.1 (free) software. A dedicated website (www.opendose.org) has been developed to provide easy and open access to all data. Conclusion: The OpenDose website allows the display and download of SAFs and the corresponding S values for 1252 radionuclides. The OpenDose collaboration, open to new research teams, will extend data production to other dosimetric models and implement new free features, such as online dosimetric tools and patient-specific absorbed dose calculation software, together with educational resources.
AbstractList Background: Radiopharmaceutical dosimetry depends on the localization in space and time of radioactive sources and requires the estimation of the amount of energy emitted by the sources deposited within targets. In particular, when computing resources are not accessible, this task can be carried out using precomputed tables of Specific Absorbed Fractions (SAFs) or S values based on dosimetric models. The OpenDose collaboration aims to generate and make freely available a range of dosimetric data and tools. Methods: OpenDose brings together resources and expertise from 18 international teams to produce and compare traceable dosimetric data using 6 of the most popular Monte Carlo codes in radiation transport (EGSnrc/EGS++, FLUKA, GATE, Geant4, MCNP/MCNPX and PENELOPE). SAFs are uploaded, together with their associated statistical uncertainties, in a relational database. S values are then calculated from mono-energetic SAFs, based on the radioisotope decay data presented in the International Commission on Radiological Protection (ICRP) publication 107. Results: The OpenDose collaboration produced SAFs for all source regions and targets combinations of the two ICRP 110 adult reference models. SAFs computed from the different Monte Carlo codes were in good agreement at all energies, with standard deviations below individual statistical uncertainties. Calculated S values were in good agreement with OLINDA 2 (commercial) and IDAC 2.1 (free) software. A dedicated website (www.opendose.org) has been developed to provide easy and open access to all data. Conclusion: The OpenDose website allows the display and download of SAFs and the corresponding S values for 1252 radionuclides. The OpenDose collaboration, open to new research teams, will extend data production to other dosimetric models and implement new free features, such as online dosimetric tools and patient-specific absorbed dose calculation software, together with educational resources.
Author Bzowski, Pawel
Bardiès, Manuel
Mairani, Andrea
Desbrée, Aurélie
Mathieu, Gilles
Denis-Bacelar, Ana M
Sarrut, David
Chauvin, Maxime
Falzone, Nadia
Borys, Damian
Lee, Boon Quan
Malaroda, Alessandra
Robinson, Andrew P
Botta, Francesca
Dabin, Jérémie
Gil, Alex Vergara
Mckay, Erin
Struelens, Lara
Mora-Ramirez, Erick
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  organization: University of Wollongong [Australia]
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  surname: Gil
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  fullname: Gil, Alex Vergara
  organization: Centre de Recherches en Cancérologie de Toulouse
– sequence: 19
  givenname: Manuel
  surname: Bardiès
  fullname: Bardiès, Manuel
  organization: Centre de Recherches en Cancérologie de Toulouse
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Title OpenDose: open access resources for nuclear medicine dosimetry
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