Area of research
Nuclear and High Energy Physics · Pulmonary and Respiratory Medicine
Research interest
Research focused on Beam (structure) and Imaging phantom, with related work in Relative biological effectiveness, Proton therapy, Detector. Notable publications include 'Monte Carlo simulations to support start-up and treatment planning of scanned proton and carbon ion therapy at a synchrotron-based facility', 'Commissioning of Helium Ion Therapy and the First Patient Treatment With Active Beam Delivery', and 'First experiences with the implementation of the European standard EN 62304 on medical device software for the quality assurance of a radiotherapy unit'.
First dosimetric evaluation of clinical raster-scanned proton, helium and carbon ion treatment plan delivery during simultaneous real-time magnetic resonance imaging
Online MR-guided proton and ion beam radiotherapy: investigation of image quality
Commissioning of Helium Ion Therapy and the First Patient Treatment With Active Beam Delivery
A Beam Monitor for Ion Beam Therapy Based on HV-CMOS Pixel Detectors
Characteristics of breathing‐adapted gating using surface guidance for use in particle therapy: A phantom‐based end‐to‐end test from CT simulation to dose delivery
Next Evolutions in Particle Therapy: Helium Ion Treatment Planning, Delivery and Clinical Implications of Biological Modeling
Back to the Future: Helium Ion Therapy 2020
EP-1373: Comparison of different detectors regarding the determination of beam width in scanned ion-beam therapy
First experiences with the implementation of the European standard EN 62304 on medical device software for the quality assurance of a radiotherapy unit
Monte Carlo simulations to support start-up and treatment planning of scanned proton and carbon ion therapy at a synchrotron-based facility