A growing number of patients with increasingly many brain metastases (BMs) are being treated with stereotactic radiosurgery. Artificial intelligence-assisted gross tumor volumes (AIGTVs) can aid the radiation oncologist in contouring the gross tumor volumes (...
Author profile
Michalis Aristophanous, PhD
Department of Medical Physics, Memorial Sloan Kettering Cancer Center
Tumor hypoxia drives radio-resistance in Head & Neck cancer (HNC) and can guide radiation dose de-escalation. Tumor hypoxia can be imaged using 18F-fluoromisonidazole (FMISO-PET; non-standard-of-care). Because hypoxia drives glycolysis, we assessed correlatio...
Single-isocenter multiple-target (SIMT) stereotactic radiosurgery (SRS) presents significant dosimetric challenges for patient-specific quality assurance (PSQA). Standard complexity metrics often fail to predict deliverability for these complex plans. This st...
Radiotherapy (RT) planning for Head and Neck Cancer (HNC) is resource-intensive and prone to variability. This study proposes and validates a fully automated pipeline synergizing deep learning-based 3D dose prediction with a knowledge-based planning (KBP) tem...