19–24 May 2024
Music City Center
US/Central timezone

Current status of MINIBEE – minibeam beamline for preclinical experiments on spatial fractionation in the FLASH regime

SUPG098
19 May 2024, 14:00
4h
Bluegrass (MCC Exhibit Hall A)

Bluegrass

MCC Exhibit Hall A

201 Rep. John Lewis Way S, Nashville, TN 37203, USA
Student Poster Presentation MC8.U01 Health & Biology Student Poster Session

Speaker

Aikaterini Rousseti (Universitaet der Bundeswehr Muenchen)

Description

In vivo studies support that the combination of protons and spatial fractionation, the so-called proton minibeam radiotherapy (pMBT), enhances the protection of normal tissue for a given tumor dose. A preclinical pMBT facility for small animal irradiation at the 68 MeV cyclotron of Helmholtz-Zentrum Berlin (HZB) will improve the understanding of this method. A two-step energy-degrading system will first define the maximum energy of the beam and further degrading will occur before the target forming a spread-out Bragg peak (SOBP), if necessary. Beam size and divergence will be adjusted by slit systems before a 90-degree magnet bending the beam into the experimental room. At the current stage, a magnetic quadrupole triplet placed close to the target demagnifies the beam by a factor of ~5. The goal is to generate a magnetically focused minibeam of 50 micrometer sigma. Scanning magnets will enable a raster-scan application in the tumor. Conventional dose rate delivery will be allowed while FLASH applications can be achieved with the possible use of a ridge filter. The results of beamline simulations by TRACE-3D and BDSIM will be presented.

Region represented Europe

Primary author

Aikaterini Rousseti (Universitaet der Bundeswehr Muenchen)

Co-authors

Alina Dittwald (Helmholtz-Zentrum Berlin für Materialien und Energie) Andrea Denker (Helmholtz-Zentrum Berlin für Materialien und Energie) Georgios Kourkafas (Helmholtz-Zentrum Berlin für Materialien und Energie) Guenther Dollinger (Universitaet der Bundeswehr Muenchen) Jessica Neubauer (Universitaet der Bundeswehr Muenchen) Judith Reindl (Universitaet der Bundeswehr Muenchen) Jürgen Bundesmann (Helmholtz-Zentrum Berlin für Materialien und Energie) Michael Mayerhofer (Universitaet der Bundeswehr Muenchen)

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