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Millipede – A new facility for particle beam radiobiology research

2026/07/23 by Jessica Neubauer, René Heller, Nicole Matejka +3
Medicine · Physics and Astronomy · #Beam (structure) #Beamline #Cyclotron #Effects of Radiation Exposure #Irradiation #Linear energy transfer #Particle accelerator #Proton #Radiation Therapy and Dosimetry #Radiobiology #Relative biological effectiveness #X-ray Spectroscopy and Fluorescence Analysis

paper · pdf · doi:10.1016/j.nimb.2026.166256

openalex publication_date 2026/07/23 · crossref created 2026/07/23 · openalex created_date 2026/07/24 · openalex updated_date 2026/07/25 · crossref deposited 2026/08/05 · crossref indexed 2026/08/05 · crossref issued 2026/10/01 · crossref published 2026/10/01 · crossref published-print 2026/10/01

Abstract

We present Millipede, a new facility for particle radiobiology research at the 6MV Tandetron accelerator at the Helmholtz-Center Dresden-Rossendorf. The setup was developed for in vitro irradiation with multiple ion species over a broad linear energy transfer (LET) range and combines microscopy-based sample positioning, scanned field delivery, and downstream single-particle detection. Its performance was evaluated using clonogenic survival and γH2AX/53BP1 immunofluorescence staining after irradiation with 10 MeV protons, 16 MeV helium, and 35 MeV boron ions. Additional proof-of-principle foci measurements were performed with lithium and carbon ions. The biological data showed clear LET-dependent trends. Proton irradiation produced survival characteristics like the X-ray reference, while helium and boron ions had steeper survival curves and increased biological effectiveness. DNA damage foci imaging showed increasingly clustered damage patterns with increasing LET. These results demonstrate the feasibility and reproducibility of radiobiological experiments at Millipede and establish the beamline as a robust platform for future particle beam research.

Citations