Category: Biblio

  • In-beam PET monitoring of mono-energetic (16)O and (12)C beams: experiments and FLUKA simulations for homogeneous targets.

    In-beam PET monitoring of mono-energetic (16)O and (12)C beams: experiments and FLUKA simulations for homogeneous targets.

    Explore →

  • Systematic analysis of biological and physical limitations of proton beam range verification with offline PET/CT scans.

    Systematic analysis of biological and physical limitations of proton beam range verification with offline PET/CT scans.

    Explore →

  • 4D in-beam positron emission tomography for verification of motion-compensated ion beam therapy.

    4D in-beam positron emission tomography for verification of motion-compensated ion beam therapy.

    Explore →

  • Accuracy of proton beam range verification using post-treatment positron emission tomography/computed tomography as function of treatment site.

    Accuracy of proton beam range verification using post-treatment positron emission tomography/computed tomography as function of treatment site.

    Explore →

  • The FLUKA Monte Carlo code coupled with the local effect model for biological calculations in carbon ion therapy.

    The FLUKA Monte Carlo code coupled with the local effect model for biological calculations in carbon ion therapy.

    Explore →

  • The influence of lateral beam profile modifications in scanned proton and carbon ion therapy: a Monte Carlo study.

    The influence of lateral beam profile modifications in scanned proton and carbon ion therapy: a Monte Carlo study.

    Explore →

  • Heidelberg Ion Therapy Center (HIT): Initial clinical experience in the first 80 patients.

    Heidelberg Ion Therapy Center (HIT): Initial clinical experience in the first 80 patients.

    Explore →

  • Implementation and workflow for PET monitoring of therapeutic ion irradiation: a comparison of in-beam, in-room, and off-line techniques.

    Implementation and workflow for PET monitoring of therapeutic ion irradiation: a comparison of in-beam, in-room, and off-line techniques.

    Explore →

  • An integral test of FLUKA nuclear models with 160 MeV proton beams in multi-layer Faraday cups.

    An integral test of FLUKA nuclear models with 160 MeV proton beams in multi-layer Faraday cups.

    Explore →

  • Extension and validation of an analytical model for in vivo PET verification of proton therapy–a phantom and clinical study.

    Extension and validation of an analytical model for in vivo PET verification of proton therapy–a phantom and clinical study.

    Explore →