Abstract

Between 2011 and 2015, the ENTERVISION Marie Curie Initial Training Network has been training 15 young researchers from a variety of backgrounds on topics ranging from in-beam Positron Emission Tomography or Single Particle Tomography techniques, to adaptive treatment planning, optical imaging, Monte Carlo simulations and biological phantom design. This article covers the main research activities, as well as the training scheme implemented by the participating institutes, which included academia, research, and industry.

Highlights

  • Introduction to theEuropean Commission (EC)’s Marie Curie Initial Training Network Project: The European Training Network in Digital Medical Imaging for Radiotherapy (ENTERVISION)Manjit Dosanjh*, Manuela Cirilli and Sparsh NavinCERN, Geneva, SwitzerlandEdited by: Marco Durante, GSI Helmholtzzentrum für Schwerionenforschung, GermanyReviewed by: Kevin Prise, Queen’s University Belfast, UK Mario A

  • As new treatment centers are opening throughout Europe, there is an increasing demand for qualified experts in the multidisciplinary domains connected to Hadron Therapy (HT). These issues were addressed by the ENTERVISION training project, a Marie Curie Initial Training Network aimed at educating young researchers in online 3D digital imaging for HT

  • ENTERVISION has trained 15 researchers in fields connected to advanced medical imaging techniques for quality assurance during cancer treatment with HT

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Summary

Introduction

Introduction to theEC’s Marie Curie Initial Training Network Project: The European Training Network in Digital Medical Imaging for Radiotherapy (ENTERVISION)Manjit Dosanjh*, Manuela Cirilli and Sparsh NavinCERN, Geneva, SwitzerlandEdited by: Marco Durante, GSI Helmholtzzentrum für Schwerionenforschung, GermanyReviewed by: Kevin Prise, Queen’s University Belfast, UK Mario A. These issues were addressed by the ENTERVISION training project, a Marie Curie Initial Training Network aimed at educating young researchers in online 3D digital imaging for HT.

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