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Taxonomy: TH- External Beam- Particle/high LET therapy: Proton therapy – Development (new technology and techniques)
|PO-GePV-T-69||4D Treatment Planning for Lung Proton Therapy: Treatment Design and Evaluation|
V T Taasti*, D Hattu, F Vaassen, R Canters, M Velders, J Mannens, J van Loon, I Rinaldi, M Unipan, W van Elmpt, Department of Radiation Oncology (MAASTRO), GROW - School for Oncology, Maastricht University Medical Centre+, Maastricht, The Netherlands.
|PO-GePV-T-97||Optimizing Design And commissioning of a Synchrotron Proton Beamline for FLASH Preclinical experiments|
U Titt1*, M Yang1, X Wang1, S Lin1, X Zhu1, K Iga2, N Sahoo1, A Koong1, X Zhang1, R Mohan1, (1) MD Anderson Cancer Center, Houston, TX, (2) Hitachi America, Ltd.
|PO-GePV-T-118||Assess the Interplay Effect Based On the Cyclotron Accelerator Proton Therapy System Machine-Specific Delivery Sequence Model|
L Zhao1*, G Liu1, J Shen2, A Lee3, D Yan1, R Deraniyagala1, C Stevens1, W Zheng1, X Li1, S Tang3, X Ding1, (1) Beaumont Health System, Royal Oak, MI, (2) Mayo Clinic, Phoenix, AZ, (3) US Oncology, Coppell, TX
|PO-GePV-T-119||Determination of Virtual Source Points for Mevion S250i Pencil Beam Scanning Proton System|
Y Chen*, C Frame, T Ma, Y Yuan, D Pang, MedStar Georgetown University Hospital, Washington, DC
|PO-GePV-T-121||Tuning, Calibration and Testing of a Dynamic Collimation System Controller for Pencil Beam Scanning Proton Therapy|
K Patwardhan*, T Geoghegan, B Smith, R Flynn, D Hyer, University of Iowa Hospitals and Clinics, Iowa City, IA
|PO-GePV-T-128||Dynamically Collimated Spatially Fractionated (GRID) Pencil Beam Scanning Proton Therapy|
B Smith*, B Allen, D Hyer, University of Iowa, Iowa City, IA
|PO-GePV-T-323||Dosimetric Impact of Materials Override of Hydrogel Spacer in Stereotactic Body Proton Therapy (SBPT) for Locally Advanced Pancreas Cancer (LAPC)|
D Han1*, H Hooshangnejad 2, W Yao3, J Jatczak4, K Ding5, (1) University of Maryland, Baltimore, MD, (2) Johns Hopkins University, School of Medicine, Biomedical Engineering, Baltimore, MD, (3) University of Maryland School of Medicine, Baltimore, MD, (4) University Of Maryland, ,,(5) Johns Hopkins University, Baltimore, MD
|SU-IePD-TRACK 5-7||Proton Arc Therapy as An Alternative to Syed Interstitial High Dose Rate (HDR) Brachytherapy for Treating a Gynecological Cancer Patient with Lateral Disease Extension|
B Yi*, S Mossahebi, E Nichols, M Guerrero, N Lamichhane, P Mohindra University of Maryland School of Medicine, Baltimore, MD
|SU-IePD-TRACK 6-2||Experimental Verification of Scanning Magnet with Distributed Winding Coils for Particle Beam Therapy|
K Nagashima*, T Yamada, T Nomura, S Soeda, Hitachi, Ltd.
|TH-D-TRACK 5-1||A Direct Machine-Specific Parameters Incorporated Spot-Scanning Proton Arc (SPArc) Algorithm|
G Liu1,2*, L Zhao1, D Yan1,X Li1, X Ding1, (1) Beaumont Health System, Royal Oak, MI,USA (2) Cancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan,China
|TU-F-TRACK 5-3||Need for Beam Collimation Design for Dose-Rate Fall-Off in Proton Flash Treatment Using Pencil Beam Scanning|
E Bentefour*, A Sawant, S Mossahebi, University of Maryland School of Medicine, Baltimore, MD
|TU-IePD-TRACK 5-5||Investigate the Delivery Efficiency and Accuracy of Spot-Scanning Proton Arc (SPArc) in Comparison with Conventional IMPT, Automatic Step-And-Shoot Multifield IMPT|
L Zhao*, G Liu, D Yan, X Li, X Ding, Beaumont Health System, Royal Oak, Michigan
|TU-IePD-TRACK 5-6||Hausdorff Distance Between Plan and Delivery Logs for Daily Treatment Quality Assurance|
Y Hao*, B Sun, A Darafsheh, T Mazur, W Smith, T Zhang, T Zhao, Washington University School of Medicine, St. Louis, MO
|WE-IePD-TRACK 5-7||Improving the Uniqueness of Numerically Extracted Proton Pencil-Beam Energy Spectrum From Integral Depth Dose|
W Yao*, University of Maryland School of Medicine, Baltimore, MD