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|SU-F-202-2||CBCT-Based Dose Calculations with a Two-Dimensional Anti-Scatter Grid Prototype: The Effect of Scatter Suppression On Dose-Calculation Accuracy|
B Miller*, T Alexeev , D Thomas , K Stuhr , B Kavanagh , M Miften , C Altunbas , University of Colorado School of Medicine, Aurora, CO
|SU-I-GPD-T-136||A Script for Automated PBS Proton GRID Plan Creation(Patent Pending)|
M O'Neil*, M Zhu , J Eley , K Langen , W Regine , J Snider , University of Maryland School of Medicine, Baltimore, MD
|SU-I-GPD-T-294||Spatially Optimized Radiation Therapy Using Block Grid Technique for Bulky Tumors: Treatment Planning Commissioning and Clinical Workflow|
K Lambson*, J McGlade , F Mourtada , Christiana Care Hospital, Newark, DE
|TU-AB-202-2||BEST IN PHYSICS (IMAGING): Evaluation of An Automated Grid Artifact Detection System for Quality Control in Digital Mammography|
C MacLellan1*, W Geiser1 , R Layman1 , D Gress2 , A Jones1 , (1) MD Anderson Cancer Center, Houston, TX, (2) American College of Radiology, Reston, VA
|TU-C1000-GePD-F7-2||Development of Proton Minibeams as New Form of GRID Radiotherapy|
S Charyyev*, C Wang , G Szalkowski , Georgia Institute of Technology, Atlanta, GA
|WE-C1030-GePD-F3-3||Monte Carlo Study of Photon Minibeams|
G Szalkowski*, C Wang , S Charyyev , Georgia Institute of Technology, Atlanta, GA
|WE-C1030-GePD-F4-2||Feasibility Study of Improving Dose Grid Size Using a Deep Learning|
D Shin*, K Kim , D Kim , T Kim , T Suh , The Catholic University of Korea, College of Medicine, Department of Biomedical Engineering, Seoul, Republic of Korea