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Keywords: radiation risk
MO-IePD-TRACK 6-4Demonstration of An Automatic Segmentation Method for Evaluating Cardiac Structure Doses in Support of Research On Cardiovascular Morbidity Subsequent to Breast Radiotherapy
M Mille1, J Jung2*, B Ky3, W Kenworthy3, C Lee4, Y Yeom1, A Kwag5, W Bosch6, S MacDonald7, O Cahlon8, J Bekelman9, C Lee1, (1) National Cancer Institute, Bethesda, MD, (2) East Carolina University, Greenville, NC, (3) University of Pennsylvania, Philadelphia, PA, (4) University of Michigan, Ann Arbor, MI, (5) Vanderbilt University, Nashville, TN, (6) Washington University, Saint Louis, MO, (7) Massachusetts General Hospital, Boston, MA, (8) Memorial Sloan Kettering Cancer Center, New York, NY, (9) University of Pennsylvania, Philadelphia, PA
PO-GePV-T-87Radiation Therapy Interference with Cardiovascular Implantable Electronic Devices; Comparison of Proton Beam Therapy Versus Intensity-Modulated Radiation Therapy
A Anvari*, T Alfonzetti, A Butala, M Carpenter, A Kassaee, I Paydar, J Jones, D Mihailidis, University of Pennsylvania, Philadelphia, PA
PO-GePV-T-106Dose to Cardiac Implantable Electronic Devices in Patients Receiving Proton Beam Therapy
T Alfonzetti*, A Anvari, A Butala, M Carpenter, A Kassaee, I Paydar, J Jones, D Mihailidis, University of Pennsylvania, Philadelphia, PA
TU-A-TRACK 2-6Multiparameter Dense Neural Network (DNN) to Estimate Patient Eye-Lens Dose During Neuro-Interventional Procedures
J Collins1*, C Guo2, A Podgorsak3, S Rudin4, D Bednarek5, (1) University at Buffalo, Buffalo, NY, (2) ,Chicago, IL, (3) University at Buffalo, Buffalo, NY, (4) University at Buffalo (SUNY) School of Medicine, Buffalo, NY, (5) University at Buffalo, Buffalo, NY
TU-A-TRACK 6-4Predicting Osteoradionecrosis From Head and Neck Radiotherapy Using a ResidualĀ convolutional Neural Network
B Reber*, B Anderson, A Mohamed, L Van Dijk, B Rigaud, M McCulloch, Y He, M Woodland, C Fuller, S Lai, K Brock, UT MD Anderson Cancer Center, Houston, TX
TU-A-TRACK 6-5Relationship Between Coronary Artery Radiation Doses and Risk of Late Coronary Artery Disease: A Report From the Childhood Cancer Survivor Study (CCSS)
S Shrestha1*, J Bates2, Q Liu3, S Smith1, D Mulrooney4, A Gupta1, C Owens1, W Leisenring5, T Gibson6, E Chow5, K Oeffinger7, L Robison4, G Armstrong4, L Constine8, B Hoppe9, C Lee6, L Court1, S Kry1, Y Yasui4, R Howell1, (1) University of Texas MD Anderson Cancer Center, Houston, TX, (2) Emory University School of Medicine, Atlanta, GA, (3) University Of Alberta, Alberta, CA, (4) St. Jude Children's Research Hospital, Memphis, TN, (5) Fred Hutchinson Cancer Research Center, Seattle, WA, (6) National Cancer Institute, Rockville, MD, (7) Duke University, Durham, NC, (8) University of Rochester Medical Center, Rochester, NY, (9) Mayo Clinic, Jacksonville, FL
TU-IePD-TRACK 2-1Distribution of Peak Skin Doses From Fluoroscopic Procedures Exceeding 5 Gy Reference Air Kerma
G Fong*, K Wunderle, Cleveland Clinic Foundation, Cleveland, OH
TU-IePD-TRACK 2-2Enhancements of the Scattered Radiation Display System Training Module
J Troville*, S Rudin, D Bednarek, (1) University at Buffalo (SUNY) Jacob's School of Medicine and Biomedical Sciences, Buffalo, NY, (2) Canon Stroke and Vascular Research Center, Buffalo, NY

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