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A B C D E F G H I J K L M N O P Q R S T U V W X Y Z # | show all

Keywords: risk
BReP-SNAP-T-78Impact of Enhanced CT-Based Heart Model On Estimating Radiation Therapy Related Late-Onset Cardiac Disease in the Childhood Cancer Survivor Study
S Shrestha1, 2*, Q Liu3, J Bates4, Y Yasui5, A Gupta1, 2, C Owens1, 2, S Smith1, R Weathers1, C Lee6, B Hoppe7, W Leisenring8, K Oeffinger9, L Constine10, D Mulrooney5, G Armstrong5, R Howell1, 2, (1) MD Anderson Cancer Center, TX (2) UTHealth Graduate School of Biomedical Sciences, TX (3) University Of Alberta, Canada (4) University Of Florida, FL (5) St. Jude Children's Research Hospital, TN (6) National Cancer Institute, MD (7) Mayo Clinic, FL (8) Fred Hutchinson Cancer Research Center, WA (9) Duke University, NC (10) University of Rochester Medical Center, NY
BReP-SNAP-T-148Risk of Target Coverage Loss in the Treatment of Synchronous Lung Lesions Via a Single-Isocenter Volumetric Modulate Arc Therapy Stereotactic Body Radiation Therapy
L Critchfield*, M Bernard, M Randall, R McGarry, D Pokhrel, University of Kentucky, Lexington, KY
PO-GeP-I-51Clinical Decision Making in CT: Risk Assessment Comparison Across 12 Risk Metrics in Patient Populations
F Ria*, W Fu, J Hoye, P Segars, A Kapadia, E Samei, RAI Labs, Duke University Health System, Durham, NC
PO-GeP-I-165Pediatric CT Radiation Exposure: Where We Were, and Where We Are Now
A Mustafa*, T Goodman, E Rowe, Yale University School of Medicine/YNHH Radiology, New Haven, CT
PO-GeP-I-183Radiation Risk Assessment of Using Gold Nanoparticles as Contrast Agent in Image-Guided Radiotherapy: A Monte Carlo Study
J Chow1*, D Mututantri-bastiyange2, (1) Princess Margaret Cancer Centre, Toronto, ON, CA, (2) Ryerson University, Toronto, ON, CA
PO-GeP-M-85Benchmarking the Plan Review Performance of a Commercial Automation Tool and a Dynamic Checklist Technology Using TG-275 High Risk Failure Modes
J Hoisak*, R Manger, G Kim, I Dragojevic, University of California, San Diego, La Jolla, CA
PO-GeP-T-46A Novel Framework for An In-Room Collision Monitoring System During Radiotherapy Treatment Delivery
Z Saleh1,2*, J Patrick1,2, M Schwer1,2, U Langner1,2, R Munbodh1,2, J Brindle1,2, D Wazer1,2, E Klein1,2, (1) Rhode Island Hospital (2) Warren Alpert Medical School of Brown University, Providence, RI
PO-GeP-T-65A Risk Bias Weighted Approach to FMEA for An Adaptive Radiation Therapy Workflow
N Islam1*, R Lalonde1, S Jang1, M Huq1, (1) UPMC Hillman Cancer Center and University of Pittsburgh School of Medicine, Pittsburgh, PA
PO-GeP-T-268Determination of a Quality Index for Stereotactic Radiosurgery Based On FMEA Risk Analysis
F Teixeira1,2*, C de Almeida2, M Huq3, (1) Brazilian National Nuclear Energy Commission, Rio De Janeiro, RJ, BR, (2) Universidade do Estado do Rio de Janei, Maracana V Isabel, RJ,BR, (3) UPMC Hillman Cancer Center and University of Pittsburgh School of Medicine, Pittsburgh, PA
PO-GeP-T-389Estimation of Neutron RBE for Mutagenesis by Simulating Clustered DNA Damage
L Montgomery1*, A Landry2, CM Lund1, J Kildea1, (1) McGill University, Montreal, QC, CA, (2) Dalhousie University, Halifax, NS, CA
PO-GeP-T-409Evaluation of PET/clinical Parameters to Predict Toxicity in Chimeric Antigen Receptor T-Cell Therapy Patients with Relapsed/refractory Non-Hodgkin Lymphoma
C Uche*, C Wright, J Baron, M Lariviere, A Barsky, D Miller, A Maity, J Plastaras, Y Xiao, University of Pennsylvania, Philadelphia, PA
PO-GeP-T-652Predicting Linac Failure Risks From Machine Performance Check Application Using An Integration of Statistical Process Control and Machine Learning
T Fuangrod1*, W Puyati2, A Khawne2, M Barnes3, P Greer3, (1) Faculty of Medicine and Public Health, HRH Princess Chulabhorn College of Medical Science, Chulabhron Royal Academy, Bangkok,TH (2) Department of Computer Engineering, Faculty of Engineering, King Mongkuts Institute of Technology Ladkrabang, Bangkok, TH (3) Department of Radiation Oncology, Calvary Mater Hospital Newcastle, Newcastle, NSW, AUS
PO-GeP-T-804Towards Quality Assurance for First AI-Driven Online Adaptive Radiotherapy Based On Failure Mode and Effect Analysis
J Booth1,2*, P Sibolt3, E Laugeman4, B Cai4, D Sjostrom3, S Mutic4, M Perez1, (1) Royal North Shore Hospital, Sydney, NSW, Australia (2)Institute of Medical Physics, School of Physics, University of Sydney, Sydney, Australia,(3)Radiotherapy Research Unit, Department Of Oncology, Herlev And Gentofte Hospital,Denmark, (4) Washington University School of Medicine, St. Louis, MO,
PO-GeP-T-819Update On a Dose Reconstruction Effort for a Large-Scale Retrospective Epidemiological Study of Late Health Effects Following Radiotherapy Within the National Wilms Tumor Study
M Mille1*, M Pauliah2, J Jung3, M Gopalakrishnan2, J Kalapurakal2, C Lee1, (1) National Cancer Institute, Rockville, MD, (2) Northwestern University, Chicago, IL, (3) East Carolina Univ, Greenville, NC
PO-GeP-T-831Using Machine Learning Techniques to Determine Dose Thresholds Predictive of Grade >= 2 Acute Rectal Toxicity in Prostate Cancer Patients Treated with Radiation Therapy
J Li1, S Vora2, S Schild2, W Wong2, M Fatyga2,W Liu2, J Hu1*, (1) Arizona State University, (2) Mayo Clinic Arizona
SU-B-TRACK 1-5(Un)Likelihood of Skin Injury When Substantial Radiation Doses Are Exceeded
M Vanderhoek*, C Morrison, Henry Ford Health System, Detroit, MI
TU-CD-TRACK 2-3Radiomic Prediction of Radiation Pneumonitis On Pretreatment Planning CT Images of Lung Cancer Patients Receiving Stereotactic Body Radiation Therapy
T Hirose1*, H Arimura2, K Ninomiya2, T Yoshitake2, J Fukunaga1, Y Shioyama2, (1)Kyushu University Hospital, Fukuoka, FukuokaJP,(2)Kyushu University, Fukuoka, FukuokaJP,
WE-A-TRACK 3-1A New Method for Rapid Reconstruction of Patient Neutron Dose in Pencil Beam Scanning Proton Treatment
Y Yeom1*, K Griffin1, M Mille1, J Jung2, C Lee3, C Lee1, (1) National Cancer Institute, Rockville, MD, (2) East Carolina Univ, Greenville, NC, (3) University of Michigan, Ann Arbor, MI