A feasibility study of zebrafish embryo irradiation with laser-accelerated protons

The development from single shot basic laser plasma interaction research toward experiments in which repetition rated laser-driven ion sources can be applied requires technological improvements. For example, in the case of radio-biological experiments, irradiation duration and reproducible controlle...

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Veröffentlicht in:Review of scientific instruments 2020-06, Vol.91 (6), p.063303-063303
Hauptverfasser: Rösch, Thomas F., Szabó, Zoltán, Haffa, Daniel, Bin, Jianhui, Brunner, Szilvia, Englbrecht, Franz S., Friedl, Anna A., Gao, Ying, Hartmann, Jens, Hilz, Peter, Kreuzer, Christian, Lindner, Florian H., Ostermayr, Tobias M., Polanek, Róbert, Speicher, Martin, Szabó, Emília R., Taray, Derya, Tőkés, Tünde, Würl, Matthias, Parodi, Katia, Hideghéty, Katalin, Schreiber, Jörg
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Sprache:eng
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Zusammenfassung:The development from single shot basic laser plasma interaction research toward experiments in which repetition rated laser-driven ion sources can be applied requires technological improvements. For example, in the case of radio-biological experiments, irradiation duration and reproducible controlled conditions are important for performing studies with a large number of samples. We present important technological advancements of recent years at the ATLAS 300 laser in Garching near Munich since our last radiation biology experiment. Improvements range from target positioning over proton transport and diagnostics to specimen handling. Exemplarily, we show the current capabilities by performing an application oriented experiment employing the zebrafish embryo model as a living vertebrate organism for laser-driven proton irradiation. The size, intensity, and energy of the laser-driven proton bunches resulted in evaluable partial body changes in the small (
ISSN:0034-6748
1089-7623
DOI:10.1063/5.0008512