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Radiological Physics and Technology|September 8, 2010
Development of a GPU-based multithreaded software application to calculate digitally reconstructed radiographs for radiotherapyShinichiro Mori, Masanao Kobayashi, Motoki Kumagai, et al.
Physics in Medicine and Biology|May 14, 2003
A CT calibration method based on the polybinary tissue model for radiotherapy treatment planningNobuyuki Kanematsu, Naruhiro Matsufuji, Ryosuke Kohno, et al.
Physics in Medicine and Biology|December 4, 2012
Adaptive radiotherapy based on the daily regression of a tumor in carbon-ion beam irradiationAi Nagano, Shinichi Minohara, Shingo Kato, et al.
International Journal of Radiation Oncology, Biology, Physics|April 16, 2003
Estimating uncertainties of the geometrical range of particle radiotherapy during respirationShinichi Minohara, Masahiro Endo, Tatsuaki Kanai, et al.
Physics in Medicine and Biology|September 1, 2007
Carbon ion therapy for ocular melanoma: planning orthogonal two-port treatmentHiroko Koyama-Ito, Tatsuaki Kanai, Shinichi Minohara, et al.
Medical Physics|July 29, 2006
Three-dimensional velocity mapping of lung motion using vessel bifurcation pattern matchingMutsumi Tashiro, Shinichi Minohara, Tatsuaki Kanai, et al.
Medical Physics|April 19, 2007
Design study of a raster scanning system for moving target irradiation in heavy-ion radiotherapyTakuji Furukawa, Taku Inaniwa, Shinji Sato, et al.
Gels (Basel, Switzerland)|April 21, 2022
Induced Radionuclides and Their Activity Concentration in Gel Dosimeters Irradiated by Carbon Ion BeamMasumitsu Toyohara, Shinichi Minohara, Yohsuke Kusano, et al.
Igaku Butsuri : Nihon Igaku Butsuri Gakkai Kikanshi = Japanese Journal of Medical Physics : an Official Journal of Japan Society of Medical Physics|July 20, 2007
[Development of the QA/QC-tools for CT number calibration of the treatment planning CT-scanner.]Yohsuke Kusano, Shinichi Minohara, Takayoshi Ishii, et al.
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