4.6 Article

Direct proton range verification using oxygen-18 enriched water as a contrast agent

期刊

RADIATION PHYSICS AND CHEMISTRY
卷 182, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.radphyschem.2021.109385

关键词

18O; Phantom; Activation; Range verification; Protontherapy

资金

  1. Comunidad de Madrid [B2017/BMD-3888 PRONTO-CM, S2013/MIT-3024 TOPUS-CM, 2016-T1/TIC-1099]
  2. Spanish Government [RTI 2018-098868B-I00, RTC-2015-3772-1]
  3. European Regional Funds
  4. European Union [793576]
  5. EU Regional Funds
  6. Instituto de Salud Carlos III (ISCIII)
  7. Ministerio de Ciencia, Innovacion y Universidades (MCNU)
  8. Pro CNICFoundation
  9. Severo Ochoa Center of Excellence [SEV-2015-0505]
  10. UCM
  11. Marie Curie Actions (MSCA) [793576] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

The study suggests using 18O-enriched water as a contrast agent for in-vivo range verification in proton therapy, with the experiments showing its potential for accurate range verification.
We propose the use of 18O-enriched water as a suitable contrast agent for potential in-vivo range verification in proton therapy. The low energy production threshold of 18F (2.6 MeV, proton range in water of 115 ?m) leads to tissue activation in very close proximity to the maximum dose deposition, facilitating accurate range verification with off-line PET imaging. This idea has been explored in a phantom experiment. A 3D-printed phantom containing inserts with 18Oenriched water was irradiated with a 100-MeV, 8 ? 8 cm2 proton beam, and the induced activity was measured with a small-animal PET-CT 30 min after irradiation. The images obtained were compared against Monte Carlo simulation using TOPAS. Good agreement was observed between reconstructed and simulated activity profiles (within 40% for specific 18F activity), with excellent spatial match to the simulated dose deposition. Because of the long half-life of 18F, the specific activity of the contrast agent could be separated and was clearly observed for more than 2 h after irradiation. Activity distribution maps were used to determine the position of the Bragg peak within 2 mm for three different regions of interest. These results show the potential of 18O-enriched water as a contrast agent in proton therapy.

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