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Physics in Medicine and Biology|December 19, 2019
A novel deep learning model using dosimetric and clinical information for grade 4 radiotherapy-induced lymphopenia predictionCong Zhu, Steven H Lin, Xiaoqian Jiang, et al.
Medical Physics|May 27, 2017
Future of medical physics: Real-time MRI-guided proton therapyBradley M Oborn, Stephen Dowdell, Peter E Metcalfe, et al.
International Journal of Radiation Oncology, Biology, Physics|July 28, 2004
Cluster models of dose-volume effectsHoward D Thames, Ming Zhang, Susan L Tucker, et al.
Physics in Medicine and Biology|November 4, 2017
Derivation of mean dose tolerances for new fractionation schemes and treatment modalitiesZoltán Perkó, Thomas Bortfeld, Theodore Hong, et al.
Physics in Medicine and Biology|January 18, 2008
Incorporating partial shining effects in proton pencil-beam dose calculationYupeng Li, Xiaodong Zhang, Mingfwu Lii, et al.
Medical Physics|May 16, 2006
Monte Carlo study of photon fields from a flattening filter-free clinical acceleratorOleg N Vassiliev, Uwe Titt, Stephen F Kry, et al.
International Journal of Radiation Oncology, Biology, Physics|May 1, 2012
Adaptive/nonadaptive proton radiation planning and outcomes in a phase II trial for locally advanced non-small cell lung cancerEugene J Koay, David Lege, Radhe Mohan, et al.
Medical Physics|June 20, 2008
Energy spectra, sources, and shielding considerations for neutrons generated by a flattening filter-free ClinacStephen F Kry, Rebecca M Howell, Uwe Titt, et al.
JCO Clinical Cancer Informatics|September 8, 2025
Bayesian Counterfactual Machine Learning Individualizes Radiation Modality Selection to Mitigate ImmunosuppressionDuo Yu, Michael J Kane, Yiqing Chen, et al.
Physics in Medicine and Biology|March 23, 2006
Dosimetric properties of photon beams from a flattening filter free clinical acceleratorOleg N Vassiliev, Uwe Titt, Falk Pönisch, et al.
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