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|PO-GePV-M-155||Feasibility Study of An InBore Real-Time Surface Monitoring System|
G Kim1*, (1) University of California, San Diego, La Jolla, CA
|PO-GePV-M-162||Comparing Patient Setup Techniques Between Optical Surface Guidance and Conventional Tattoo/Laser Alignment Using Cherenkov Image Consistency Metrics|
R Hachadorian1*, D Alexander1, E Chen2, D Gladstone1,3, M Jermyn1,4, G Gill3, R Zhang1,3, P Bruza1,4, L Jarvis1,3, B Pogue1,4, (1) Dartmouth College, Hanover, NH, (2) Cheshire Medical Center, Keene, NH, (3) Dartmouth-Hitchcock Med. Ctr., Lebanon, NH, (4) DoseOptics LLC, Lebanon, NH.
|PO-GePV-T-338||Predicting the Effect of Indirect Cell Kill for Radiosurgery of Multiple Brain Metastases Via Single-Isocenter/Multi-Target Volumetric Modulated Arc Therapy (SIMT-VMAT)|
A Palmiero*, D Fabian, M Randall, W St Clair, D Pokhrel, University of Kentucky, Lexington, KY
|PO-GePV-T-368||To Determine the Impact of Rotational Uncertainties On Dosimetric Coverage of Distant Targets Using VMAT Planning and a TPS Tool to Measure Plan Uncertainty|
G Klein*, Y Mutaf, Kaiser Permanente, Dublin, CA
|PO-GePV-T-371||Use Monte-Carlo Simulation to Determine the Coverage-Based PTV Margin|
L Huang*, J Chang, Northwell Health, Lake Success, NY
|SU-D-TRACK 6-3||Automatic Detection of Vertebral Body Misalignment Errors in Cone-Beam CT Guided Radiotherapy Using a Convolutional Neural Network|
D Luximon*, J Neylon, J Lamb, University of California, Los Angeles, Los Angeles, CA
|TH-C-TRACK 5-4||Management of Larger Number of Multiple Brain Metastases Patients Via Restricted Single Isocenter Stereotactic Radiosurgery (RESIST) Method|
A Palmiero*, W St Clair, M Randall, D Pokhrel, University of Kentucky, Lexington, KY