The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a firm basis for evidence-based particle therapy at the European level. To achieve this, this work package will set up a worldwide unique prospective data registration programme for nine different tumour sites. Such programme will provide more insights into the current practice across all European particle therapy centres and into the results of particle therapy with regard to radiation-induced toxicity and efficacy in terms of local control and survival. More importantly, prospective data registration provides major opportunities to continuously improve the quality of particle therapy, by defining bench marks, to identify best practices that ma...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Particle therapy (PT) as cancer treatment, using protons or heavier ions, can provide a more favorab...
Particle therapy (PT) as cancer treatment, using protons or heavier ions, can provide a more favorab...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
The overarching aim of work package 1 of the European Proton Therapy Network (EPTN) is to create a f...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Proton therapy is delivered to selected cancer patients presenting with rare tumours, for which a do...
Particle therapy (PT) as cancer treatment, using protons or heavier ions, can provide a more favorab...
Particle therapy (PT) as cancer treatment, using protons or heavier ions, can provide a more favorab...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...
Particle therapy using protons or heavier ions is currently the most advanced form of radiotherapy a...