Category: Biblio

  • Implementation and initial clinical experience of offline PET/CT-based verification of scanned carbon ion treatment.

    Implementation and initial clinical experience of offline PET/CT-based verification of scanned carbon ion treatment.

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  • A Monte Carlo-based treatment planning tool for proton therapy.

    A Monte Carlo-based treatment planning tool for proton therapy.

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  • Distributions of secondary particles in proton and carbon-ion therapy: a comparison between GATE/Geant4 and FLUKA Monte Carlo codes.

    Distributions of secondary particles in proton and carbon-ion therapy: a comparison between GATE/Geant4 and FLUKA Monte Carlo codes.

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  • Modelling of cell killing due to sparsely ionizing radiation in normoxic and hypoxic conditions and an extension to high LET radiation.

    Modelling of cell killing due to sparsely ionizing radiation in normoxic and hypoxic conditions and an extension to high LET radiation.

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  • Phase I/II trial evaluating carbon ion radiotherapy for the treatment of recurrent rectal cancer: the PANDORA-01 trial.

    Phase I/II trial evaluating carbon ion radiotherapy for the treatment of recurrent rectal cancer: the PANDORA-01 trial.

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  • Benchmarking nuclear models of FLUKA and GEANT4 for carbon ion therapy.

    Benchmarking nuclear models of FLUKA and GEANT4 for carbon ion therapy.

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  • FLUKA simulations of the response of tissue-equivalent proportional counters to ion beams for applications in hadron therapy and space.

    FLUKA simulations of the response of tissue-equivalent proportional counters to ion beams for applications in hadron therapy and space.

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  • A community call for a dedicated radiobiological research facility to support particle beam cancer therapy.

    A community call for a dedicated radiobiological research facility to support particle beam cancer therapy.

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  • ENLIGHT: The European Network for Light Ion Hadron Therapy.

    ENLIGHT: The European Network for Light Ion Hadron Therapy.

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  • Simulations of microdosimetric quantities with the Monte Carlo code FLUKA for carbon ions at therapeutic energies.

    Simulations of microdosimetric quantities with the Monte Carlo code FLUKA for carbon ions at therapeutic energies.

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