Area of research
Radiology, Nuclear Medicine and Imaging · Biomedical Engineering
Research interest
Research interests include Medical Imaging Techniques and Applications, Radiomics and Machine Learning in Medical Imaging, Radiopharmaceutical Chemistry and Applications, and Advanced X-ray and CT Imaging.
Comparison of Multiple Segmentation Methods for Volumetric Delineation of Primary Prostate Cancer with Prostate-Specific Membrane Antigen–Targeted<sup>18</sup>F-DCFPyL PET/CT
Dynamic PET-facilitated modeling and high-dose rifampin regimens for <i>Staphylococcus aureus</i> orthopedic implant–associated infections
Dynamic imaging in patients with tuberculosis reveals heterogeneous drug exposures in pulmonary lesions
Semiquantitative Parameters in PSMA-Targeted PET Imaging with [18F]DCFPyL: Impact of Tumor Burden on Normal Organ Uptake
Dynamic whole-body PET imaging: principles, potentials and applications
Feasibility of state of the art PET/CT systems performance harmonisation
Repeatability of SUV in Oncologic <sup>18</sup>F-FDG PET
Timed sequential therapy of the selective T-type calcium channel blocker mibefradil and temozolomide in patients with recurrent high-grade gliomas
Practical PERCIST: A Simplified Guide to PET Response Criteria in Solid Tumors 1.0
Repeatability of <sup>18</sup>F-FLT PET in a Multicenter Study of Patients with High-Grade Glioma
<sup>18</sup>F-DCFBC PET/CT for PSMA-Based Detection and Characterization of Primary Prostate Cancer
Generalized whole-body Patlak parametric imaging for enhanced quantification in clinical PET
Dynamic whole-body PET parametric imaging: I. Concept, acquisition protocol optimization and clinical application
Dynamic whole-body PET parametric imaging: II. Task-oriented statistical estimation
Absolute myocardial flow quantification with 82Rb PET/CT: comparison of different software packages and methods
Biodistribution, Tumor Detection, and Radiation Dosimetry of <sup>18</sup>F-DCFBC, a Low-Molecular-Weight Inhibitor of Prostate-Specific Membrane Antigen, in Patients with Metastatic Prostate Cancer
Noise Considerations for PET Quantification Using Maximum and Peak Standardized Uptake Value
Cardiac PET/CT Misregistration Causes Significant Changes in Estimated Myocardial Blood Flow