Area of research
Biomedical Engineering · Radiation
Research interest
Research interests include Advanced X-ray and CT Imaging, Radiation Therapy and Dosimetry, Advanced Radiotherapy Techniques, and Nuclear Physics and Applications.
Reduction of clinical safety margins in proton therapy enabled by the clinical implementation of dual-energy CT for direct stopping-power prediction
Refinement of the Hounsfield look‐up table by retrospective application of patient‐specific direct proton stopping‐power prediction from dual‐energy CT
Dual-Energy Computed Tomography to Assess Intra- and Inter-Patient Tissue Variability for Proton Treatment Planning of Patients With Brain Tumor
Towards a generalised development of synthetic CT images and assessment of their dosimetric accuracy
On the equivalence of image-based dual-energy CT methods for the determination of electron density and effective atomic number in radiotherapy
Reply to “Comment on Methodological accuracy of image‐based electron density assessment using dual‐energy computed tomography” [Med. Phys. 44, 2429‐2437 (2017)]
EP-2089: Dual-energy CT enables dose calculation on scans with iodinated contrast agent
OC-0085: Improving CT calibration for proton range prediction by dual-energy CT based patient-cohort analysis
EP-2085: Simplification of relative electron density information in synthetic CT images for dose calculation
Evaluation of Stopping-Power Prediction by Dual- and Single-Energy Computed Tomography in an Anthropomorphic Ground-Truth Phantom
Dual-energy CT based proton range prediction in head and pelvic tumor patients
Methodological accuracy of image-based electron density assessment using dual-energy computed tomography
Comment on: Dosimetric comparison of stopping‐power calibration with dual‐energy <scp>CT</scp> and single‐energy <scp>CT</scp> in proton therapy treatment planning [Med. Phys. 43(6), 2845‐2854 (2016)]
EP-1673: Electron-density assessment using dual-energy CT: accuracy and robustness
Clinical Implementation of Dual-energy CT for Proton Treatment Planning on Pseudo-monoenergetic CT scans
Range prediction for tissue mixtures based on dual-energy CT
Technical Note: Radiological properties of tissue surrogates used in a multimodality deformable pelvic phantom for MR‐guided radiotherapy