Area of research
Pulmonary and Respiratory Medicine · Radiation
Research interest
Research interests include Monte Carlo method, Proton, Physics, Proton therapy, Computer science, and Collimated light.
Advanced Monte Carlo simulations of emission tomography imaging systems with GATE
Monitoring Ion Beam Therapy With a Compton Camera: Simulation Studies of the Clinical Feasibility
Prompt-gamma monitoring in hadrontherapy: A review
Compton camera study for high efficiency SPECT and benchmark with Anger system
A cost-effective monitoring technique in particle therapy via uncollimated prompt gamma peak integration
Probabilistic models and numerical calculation of system matrix and sensitivity in list-mode MLEM 3D reconstruction of Compton camera images
Monte Carlo comparison of x-ray and proton CT for range calculations of proton therapy beams
Collimated prompt gamma TOF measurements with multi-slit multi-detector configurations
Development of a Compton camera for medical applications based on silicon strip and scintillation detectors
Design optimisation of a TOF-based collimated camera prototype for online hadrontherapy monitoring
Real-time proton beam range monitoring by means of prompt-gamma detection with a collimated camera
Absolute prompt-gamma yield measurements for ion beam therapy monitoring
Assessment and improvements of Geant4 hadronic models in the context of prompt-gamma hadrontherapy monitoring
Distributions of secondary particles in proton and carbon-ion therapy: a comparison between GATE/Geant4 and FLUKA Monte Carlo codes
Machine learning-based patient specific prompt-gamma dose monitoring in proton therapy
Interaction vertex imaging (IVI) for carbon ion therapy monitoring: a feasibility study