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MO-C930-GePD-F5-5 | Evaluation of the Dose Delivery Accuracy and Its Dependence On Imaging Modality and Deformable Image Registration Algorithm in Prostate Cancer Patients J Hammers1*, S Pirozzi2 , D Lindsay3 , O Kaidar-Person4 , N Papanikolaou5 , S Stathakis6 , R Chen7 , S Das8 , P Mavroidis9 , (1) ,Chapel Hill, NC, (2) MIM Software Inc., Cleveland, OH, (3) University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, (4) Rambam Health Care Campus, Haifa, ,(5) Ut Health San Antonio, San Antonio, TX, (6) University Of Texas Health, San Antonio, TX, (7) UNC Health Care, Chapel Hill, NC, (8) University of North Carolina, Chapel Hill, NC, (9) university North Carolina, Chapel Hill, NC |
MO-I345-GePD-F6-6 | Accuracy of 3D/3D and 3D/2D Registration in Intracranial Radiosurgery Using 6DOF Robotic Couch H Kuo1*, S Berry2 , A Ballangrud3 , P S Atwal4 , C Della Biancia5 , P Pathare6 , D Shasha7 , D Lovelock8 , M Hunt9 , (1) Memorial Sloan Kettering Cancer Center, Norwalk, CT, (2) Memorial Sloan Kettering Cancer Center, New York, NY, (3) Memorial Sloan-Kettering Cancer Center, New York, NY, (4)BC Cancer - Abbotsford, BC, CAN, (5) Memorial Sloan-Kettering Cancer Center, New York, NY, (6) Norwalk Hospital, Norwalk Hospial, CT, (7) Memorial Sloan Kettering Cancer Center, Nwe York, NY, (8) Mem Sloan-Kettering Cancer Ctr, New York, NY, (9) Memorial Sloan Kettering Cancer Center, New York, NY |
SU-F-202-1 | Patient Setup System Using a Virtual X-Ray Image M Hashimoto1*, M Nakano2 , A Haga3 , K Nawa4 , (1) Kitasato University, Sagamiharashi, Kanagawa,(2) Cancer Institute Hospital, Koto-ku, Tokyo, (3) Tokushima University, Tokushimashi, Tokushima, (4) The University of Tokyo Hospital, Bunkyo-ku, Tokyo |
SU-F-202-5 | Intracranial Tissue Visualization and Alignment Prior to Stereotactic Radiosurgery Z Labby*, P Hill , D Jacqmin , B Barraclough , A Besemer , D Dunkerley , University of Wisconsin, Madison, WI |
SU-F-DBRA-4 | Effectiveness of Dynamic Adaptive Proton Therapy with Computed Tomography Image Guidance in Prostate Cancer S Moriya1*, H Tachibana2 , K Hotta2 , N Nakamura2 , T Akimoto2 , T Sakae1 , (1) University of Tsukuba, Tsukuba, Ibaraki, (2) National Cancer Center, Kashiwa, Chiba |
SU-F-KDBRB1-7 | Bioluminescence Tomography-Guided Radiation Therapy for Glioblastoma in Vivo Z Deng1*, X Xu1 , e Kim1 , Z Belcaid1 , T Garzon-Muvdi1 , A Luksik1 , R Maxwell1 , I Iordachita2 , J Yu3 , M Lim1 , J Wong1 , K Wang1 , (1) Johns Hopkins University School of Medicine, Baltimore, MD, (2) Johns Hopkins University, Baltimore, MD, (3) Shaanxi Normal University, Shanxi, China |
SU-H300-GePD-F5-4 | Image Guidance in Breath Hold Proton Pencil Beam Scanning Treatment P Wang1*, K Leach2 , S Tang3 , C Chang4 , J Sturgeon5 , V Mangona6 , (1) University of Maryland School of Medicine, Columbia, MD, (2) Texas Center for Proton Therapy, Irving, Texas, (3) Texas Center for Proton Therapy, Irving, TX, (4) Texas Center for Proton Therapy, Irving, Texas, (5) Texas Center for Proton Therapy, Irving, Texas, (6) Texas Center for Proton Therapy, Irving, Texas |
SU-H300-GePD-F7-2 | A Monte Carlo Based Treatment Planning System for Optical Image Guided Small Animal Irradiation K Xu1,2, J Shi1 , A Keyvanloo1 , T S Udayakumar1 , W Zhao1,2 , N Dogan1,2 , A Pollack1 , Y Yang1,2 * , (1) University of Miami Miller School of Medicine, Miami, FL, (2) University of Miami, Coral Gables, FL |
SU-H330-GePD-F8-3 | Quantitative Regression Model of CBCT Gamma Index and Its Clinical Application On Pre-Treatment Patient Setup Evaluation T Chen*, D Barbee , I Das , NYU Langone Medical Center, New York, NY |
SU-H400-GePD-F5-1 | Inter-Observer Variation in Intra-Fraction Motion Assessment During Intracranial Stereotactic Radiosurgery Using MV Images R Sullivan*, X Wu , E Covington , R Popple , The University of Alabama at Birmingham, Birmingham, AL |
SU-H400-GePD-F5-2 | MV Portal Imaging Versus Optical Surface Imaging for Intra-Fraction Motion Detection in Intracranial Stereotactic Radiosurgery R Sullivan*, E Covington , R Popple , The University of Alabama at Birmingham, Birmingham, AL |
SU-I-GPD-E-4 | A Comparison of Two Kinds of Patient Marking Methods Used With Vacuum Cushion Immobilization in the Radiotherapy for Various Treatment Sites J Pan*, D Yu , G Han , Q Song , C Ruan , J Fu , B Wu , G Ma , L Wang , Renmin Hospital of Wuhan University, Wuhan, Hubei |
SU-I-GPD-J-14 | IGRT Credentialing for NCI Sponsored Clinical Trials A Molineu*, P Chi , J Lowenstein , D Followill , UT MD Anderson Cancer Center, Houston, TX |
SU-I-GPD-J-19 | Real Time Right Breast Deep Inspiration Breath Hold (DIBH) Dosimetry F Liu*, T Marston , E Klein , Warren Alpert School of Medicine at Brown University, Providence, RI |
SU-I-GPD-J-40 | Quantitative Assessment of 6D Image Registration Software Using CBCT Provided by Two Manufacturers Y Shibayama*, S Takarabe , J Fukunaga , T Hirose , Kyushu University Hospital, Fukuoka, Fukuoka |
SU-I-GPD-T-448 | Potential for Using Smart Radiotherapy Biomaterials Instead of Traditional Image-Guided Radiotherapy Devices J Chin1*, M Moreau1,2, N Sinha2, R Mueller4, S Yasmin-Karim2, W Ngwa1,2,3, (1) University of Massachusetts Lowell, Lowell, MA (2) Harvard Medical School, Boston, MA (3) Dana Farber Cancer Institute, Boston, MA, Brigham and Women's Hospital (4) Heidelberg University, Heidelberg, Germany |
TH-AB-DBRA-2 | An Externally and Internally Deformable Lung Motion Phantom with Programmable, Variable External-Internal Correlation m ranjbar1*, P Sabouri1 , C Repetto1 , A Sawant1 , (1) University of Maryland School of Medicine, Baltimore, MD |
TH-AB-DBRA-11 | Novel Visual Feedback Device Provides Enhanced Patient Coaching Experience for Patients Undergoing Left Breast DIBH D Campos1*, E Steiner2 , K Makhija3 , P Keall4 , M Daly5 , Y Rong6 , T Yamamoto7 , L Shi8 , S Benedict9 , (1) University of California - Davis, Sacramento, CA, (2) The University of Sydney, The University Of Sydney, NSW, (3) University of Sydney, Camperdown, New South Wales, (4) University of Sydney, Camperdown, NSW, (5) University of California Davis Comprehensive Cancer Center, Sacramento, CA, (6) University of California-Davis, Sacramento, CA, (7) UC Davis School of Medicine, Sacramento, CA, (8) University of California - Davis, Sacramento, CA, (9) UC Davis Cancer Center, Sacramento, CA |
TH-CD-DBRA-11 | The Implementation of Real-Time Image-Guided Adaptive Radiotherapy for a Fixed-Beam Radiotherapy Prototype P Liu1*, D Nguyen1 , R O'Brien1 , P Keall1 , J Booth1,2 , (1) The University of Sydney, Camperdown, NSW, (2) Royal North Shore Hospital, St Leonards, |
TU-AB-205-4 | Sequential Monoscopic Image Guided Motion Compensation in Tomotherapy Stereotactic Body Radiotherapy (SBRT) L Lu*, E Chao , S Chang , T Zhu , A Wang , J Lian , UNC School of Medicine, Chapel Hill, NC |
TU-AB-205-5 | Continuous Generation of Volumetric Patients Images During Radiotherapy Treatment Using Triggered KV Images and An External Surrogate M Lafreniere1*, N Mahadeo2 , J Rottmann3 , C Williams4 , (1) Harvard Medical School - DFCI, Cambridge, MA, (2) ,,,(3) Brigham and Woman's Hospital, Boston, MA, (4) Brigham and Women's Hospital, Boston, MA |
TU-C1030-GePD-F5-2 | Comparison of KV Imaging Quality Parameters Between Two Commercial On-Board Image Guided Systems S George*, W Hsi , A Gutierrez , T Romaguera , S Rana , L Coutinho , L Hernandez , J Bennouna , T Poozhikala , Miami Cancer Institute, Miami, FL |
TU-C1030-GePD-F5-3 | Optimization of KV IGRT Frequency for Prone Breast EBRT: A Study On Patient Anatomy Data and First Three-Day Couch Shift Correction H Xu*, S Lee , B Yi , J Zhou , M Guerrero , S Chen , S Cheston , University of Maryland School Of Medicine, Baltimore, MD |
TU-C1030-GePD-F5-5 | Utilization of KV IGRT for Prone Breast External Beam Radiation Treatment: A Comparison of Imaging Frequency H Xu*, E Kowalski , S Lee , B Yi , S Chen , W D'Souza , S Cheston , University of Maryland School Of Medicine, Baltimore, MD |
TU-C1030-GePD-F6-1 | A Novel Phantom for Characterization of Dual Energy Imaging Using An On-Board Imager M Haytmyradov1*, R Patel1 , H Mostafavi2 , M Surucu1 , A Wang2 , L Zhu2 , M Harkenrider1 , J Roeske1 , (1) Loyola University Chicago, Maywood, IL, (2) Varian Medical Systems, Palo Alto, CA |
TU-C1030-GePD-F9-6 | Evaluation of a Commercial DIR Platform for Contour Propagation in Prostate Cancer Patients Treated with IMRT/VMAT J Hammers1*, S Pirozzi2 , D Lindsay3 , O Kaidar-Person4 , N Papanikolaou5 , S Stathakis6 , R Chen7 , S Das8 , P Mavroidis9 , (1) ,Chapel Hill, NC, (2) MIM Software Inc., Cleveland, OH, (3) University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, (4) Rambam Health Care Campus, Haifa, ,(5) Ut Health San Antonio, San Antonio, TX, (6) University Of Texas Health, San Antonio, TX, (7) UNC Health Care, Chapel Hill, NC, (8) University of North Carolina, Chapel Hill, NC, (9) university North Carolina, Chapel Hill, NC |
TU-C930-GePD-F5-5 | Automatic Localization and Segmentation of the Pancreas in Motion Artifact-Free CBCT Reconstructions Using Fully Convolutional Networks P Jordan*, A Wang , J Star-Lack , J Van Heteren , Varian Medical Systems, Palo Alto, CA |
TU-C930-GePD-F9-5 | The Impact of Using a Surface Imaging System On the Number of Portal Images Acquired During Setup for Breast Cancer Patients B Juneja*, L Kim , A Patel , MD Anderson Cancer Center at Cooper, Camden, NJ |
TU-E115-GePD-F5-6 | Is Surface Imaging Practical for 4D Gating On Animal Patients: A Feasibility Study J McCulloch*, K Rasmussen , J Roring , C Kabat , D Stanley , A Licon , R Crownover , Z Shi , N Kirby , D Saenz , S Stathakis , N Papanikolaou , Ut Health San Antonio, San Antonio, TX |
TU-E115-GePD-F9-5 | Initial Patient Setup Influences Image-Guided Setup Accuracy R Culcasi1*, G Baran2 , M Snyder1,3 , (1) Wayne State University School of Medicine, Detroit, MI, (2) Karmanos Cancer Institute, Detroit, MI, (3) Beaumont Health System, Royal Oak, MI |
WE-AB-KDBRB1-3 | Development of a Robotic Prototype Ultrasound Tomography System for Image Guided Prone Breast SBRT D Parsons*, T Chiu , R Chopra , W Lu , S Jiang , X Gu , UT Southwestern Medical Center, Dallas, TX |
WE-AB-KDBRB1-6 | BEST IN PHYSICS (JOINT IMAGING-THERAPY): ACROBEAT: Adaptive CaRdiac COne BEAm Computed Tomography T Reynolds*, C Shieh , R O'Brien , P Keall , University of Sydney, Camperdown, NSW |
WE-AB-KDBRC-10 | Predicting Lung Tumor Shrinkage During Radiotherapy Seen in a Longitudinal MR Imaging Study Via a Deep Learning Algorithm c wang*, Y Hu , A Rimner , N Tyagi , E Yorke , G Mageras , J Deasy , P Zhang , Memorial Sloan-Kettering Cancer Center, New York, NY |
WE-C1000-GePD-F2-3 | Is Image Registration-Based Dose Estimation Accurate Enough for Adaptive Radiotherapy? R Li1*, L Lu2 , T Zhu2 , J Lian2 , (1) Duke University, Durham, North Carolina, (2) University of North Carolina, Chapel Hill, North Carolina |
WE-C930-GePD-F5-2 | Commissioning and Accuracy of On-Board Imaging and Optical Surface Tracking for Three Varian Linear Accelerators M Hyun1*, R Ma2 , T Diener1 , (1) University of Nebraska Medical Center, Omaha, NE, (2) Memorial Sloan Kettering Cancer Ctr. Westchester, West Harrison, NY |
WE-C930-GePD-F5-3 | Improved Setup and Workflow for Brain Treatments On the Halcyon Linac by Using Surface Guided Radiation Therapy E Flores-Martinez*, L Cervino , T Pawlicki , G Kim , UC San Diego, La Jolla, CA |
WE-FG-KDBRB1-4 | Deep Learning-Based Super-Resolution 4D-MRI During MRI-Guided Radiation Therapy H Zhang1*, HM Gach1 , S Olberg1 , O Green1 , H Li1 , D Yang1 , G Hugo1 , J Kim2 , S Mutic1 , J Park1 , (1) Washington University in St. Louis, St Louis, MO, (2) Yonsei University College of Medicine, Seoul, Korea |
WE-HI-KDBRB1-2 | Characterisation of 4D Ultrasound Systems with Streaming Interfaces for Real-Time Motion Compensation in Radiotherapy S Ipsen*, R Bruder , F Ernst , A Schweikard , Institute for Robotics and Cognitive Systems, University of Luebeck, Luebeck, Germany |
WE-HI-KDBRB1-11 | Real-Time Localization of Intrafractional Lung Tumor Motion Using IR-UWB Radars R El-Bardan1*, P Tupin1 , S Han-Oh2 , E Oh3 , D Malaviya1 , A J Di Rienzo1 , J Wong2 , (1) One Health Group, Chantilly, VA 20151, (2) Department of Radiation Oncology and Molecular Radiation Sciences, Johns Hopkins University School of Medicine, Baltimore, MD 21231, (3) Department of Electrical and Computer Engineering, United States Naval Academy, Annapolis, MD 21402 |