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, MRI in cancer diagnosis, and Advanced X-ray and CT Imaging.
Exploring the feasibility of a 40-minute uptake time for long axial field of view [18F]FDG PET/CT tumour scan: an evidence-based single-center study
Ultrafast 30-s total-body PET/CT scan: a preliminary study
An artificial intelligence-driven image quality assessment system for whole-body [18F]FDG PET/CT
A personal acquisition time regimen of 68Ga-DOTATATE total-body PET/CT in patients with neuroendocrine tumor (NET): a feasibility study
Total-body 18F-FDG PET/CT scan in oncology patients: how fast could it be?
Ultra-low-activity total-body dynamic PET imaging allows equal performance to full-activity PET imaging for investigating kinetic metrics of 18F-FDG in healthy volunteers
Investigating ultra-low-dose total-body [18F]-FDG PET/CT in colorectal cancer: initial experience
Short-time total-body dynamic PET imaging performance in quantifying the kinetic metrics of 18F-FDG in healthy volunteers
Kinetic metrics of 18F-FDG in normal human organs identified by systematic dynamic total-body positron emission tomography
Can the BMI-based dose regimen be used to reduce injection activity and to obtain a constant image quality in oncological patients by 18F-FDG total-body PET/CT imaging?
Total-body PET/CT using half-dose FDG and compared with conventional PET/CT using full-dose FDG in lung cancer
The image quality, lesion detectability, and acquisition time of 18F-FDG total-body PET/CT in oncological patients
Total-Body PET/CT: Current Applications and Future Perspectives
Performance characteristics of the digital uMI550 PET/CT system according to the NEMA NU2-2018 standard
Total-Body PET/Computed Tomography Highlights in Clinical Practice
First Human Imaging Studies with the EXPLORER Total-Body PET Scanner*
Total-Body Dynamic Reconstruction and Parametric Imaging on the uEXPLORER
Gadolinium-Based Nanoparticles for Theranostic MRI-Guided Radiosensitization in Hepatocellular Carcinoma