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  • Integration and evaluation ... Integration and evaluation of automated Monte Carlo simulations in the clinical practice of scanned proton and carbon ion beam therapy
    Bauer, J; Sommerer, F; Mairani, A ... Physics in medicine & biology, 08/2014, Volume: 59, Issue: 16
    Journal Article
    Peer reviewed

    Monte Carlo (MC) simulations of beam interaction and transport in matter are increasingly considered as essential tools to support several aspects of radiation therapy. Despite the vast application ...
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  • Experimental verification o... Experimental verification of a non-invasive method to monitor the lateral pencil beam position in an anthropomorphic phantom for carbon-ion radiotherapy
    Félix-Bautista, R; Gehrke, T; Ghesquière-Diérickx, L ... Physics in medicine & biology, 09/2019, Volume: 64, Issue: 17
    Journal Article
    Peer reviewed

    The dose conformation and the sparing of neighboring critical healthy structures are improved in carbon-ion beam radiotherapy in comparison to conventional photon radiotherapy. Inter and ...
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  • Methodology paper: a novel ... Methodology paper: a novel phantom setup for commissioning of scanned ion beam delivery and TPS
    Jäkel, O; Ackermann, B; Ecker, S ... Radiation oncology, 05/2019, Volume: 14, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    Commissioning of treatment planning systems (TPS) and beam delivery for scanned light ion beams is an important quality assurance task. This requires measurement of large sets of high quality ...
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  • Biological dose optimizatio... Biological dose optimization with multiple ion fields
    Gemmel, A; Hasch, B; Ellerbrock, M ... Physics in medicine & biology, 12/2008, Volume: 53, Issue: 23
    Journal Article
    Peer reviewed

    We describe a method to irradiate arbitrarily shaped target volumes with simultaneously optimized multiple fields of fast carbon ions, explicitly taking into account sparing of organs at risk. The ...
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