To assess the feasibility and dosimetric performance of volumetric-modulated arc therapy (VMAT) for total body irradiation (TBI) using high-resolution multileaf collimators (HR-MLCs).
Author profile
Peter G. Maxim, PhD
University of California Irvine
Feasibility of Total Body Irradiation (TBI) Treatment Planning Using High-Resolution Multileaf Collimators Compared to Conventional Mlc Systems
Poster Program · Therapy Physics
Head and Neck Gross Tumor Volume Deep-Learning Autocontouring Model Using Bigroc Collaborative Data
Accurate delineation of Head and Neck (H&N) Gross Tumor Volumes (GTV) is a prerequisite for effective radiotherapy, represents a significant cognitive challenge, and may contribute to an observed outcomes deficit between high-volume and low-volume H&N radioth...
Poster Program · Therapy Physics
Non-Invasive Reversible Software-Based Configuration of a Clinically Used Linear Accelerator for Preclinical Electron Flash Radiobiology
Configuring clinical linear accelerators (LINACs) for ultra-high dose rate (UHDR) electron experiments typically requires invasive hardware modification or manufacturer intervention, limiting accessibility. We developed an independent, non-invasive, software-...
Poster Program · Therapy Physics