The PIOTRON: initial performance, preparation and experience with pion therapy
Autor: | Ernst Walder, Peter Fessenden, Charles Perret, Myriam Salzmann, Eros Pedroni, Carl F. von Essen, Kenneth Shortt, John F. Crawford, Hans Blattmann |
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Rok vydání: | 1982 |
Předmět: |
Cancer Research
Quantitative Biology::Tissues and Organs Physics::Medical Physics Bragg peak Imaging phantom Radiotherapy High-Energy Immobilization Optics Pion Neoplasms Medicine Humans Radiology Nuclear Medicine and imaging Radiation business.industry Solid angle Isocenter Radiotherapy Dosage Oncology Mockup business Nuclear medicine Bolus (radiation therapy) Beam (structure) Elementary Particles Relative Biological Effectiveness |
Zdroj: | International journal of radiation oncology, biology, physics. 8(9) |
ISSN: | 0360-3016 |
Popis: | The PIOTRON is a large solid angle superconducting channel built for the use of negative pi-mesons in radiotherapy. The pions are produced by protons of 590 MeV striking a target of molybdenum or beryllium. The pions are divided into 60 channels and deflected twice to enter the treatment volume radially. The momentum and the momentum band for all 60 channels can be chosen and the beam spot of Bragg peak pions at the isocenter of the applicator is a few centimeters in each direction. Dynamic scanning can thus achieve 3-dimensionally shaped treatment volumes. Two different methods are available: the ring scan, using changes of pion range; and the spot scan, involving translation of the patient through the fixed beam spot. Dose distributions of individual and multiple beams were plotted in a cylindrical water phantom. Radiobiological experiments with mammalian cells in gel and with mouse feet were performed. A special beam geometry using a sector of 15 beams was selected for the first treatments of patients with metastatic skin nodules. Six patients were treated. Acute skin reactions were scored and compared with those from orthovoltage therapy with comparable beam geometry. The RBE for 10 fractions is between 1.4 and 1.5. The next step involved treatment of patients inside water-bolus rings in preparation for dynamic therapy. Patients were then treated with the spot scan dynamic mode in the water bolus. The initial responses and reactions are favorable and confirm the feasibility and accuracy of dynamic pion therapy. |
Databáze: | OpenAIRE |
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