Depth dose measurements in water for

Autor: Daria, Boscolo, Daria, Kostyleva, Christoph, Schuy, Uli, Weber, Emma, Haettner, Sivaji, Purushothaman, Peter, Dendooven, Timo, Dickel, Vasyl, Drozd, Bernhard, Franczack, Hans, Geissel, Christine, Hornung, Felix, Horst, Erika, Kazantseva, Natalia, Kuzminchuk-Feuerstein, Giulio, Lovatti, Ivan, Mukha, Chiara, Nociforo, Stephane, Pietri, Marco, Pinto, Claire-Anne, Reidel, Heidi, Roesch, Olga, Sokol, Yoshiki K, Tanaka, Helmut, Weick, Jianwei, Zhao, Christoph, Scheidenberger, Katia, Parodi, Marco, Durante
Rok vydání: 2022
Zdroj: Nuclear instrumentsmethods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment. 1043
ISSN: 0168-9002
Popis: Owing to the favorable depth-dose distribution and the radiobiological properties of heavy ion radiation, ion beam therapy shows an improved success/toxicity ratio compared to conventional radiotherapy. The sharp dose gradients and very high doses in the Bragg peak region, which represent the larger physical advantage of ion beam therapy, make it also extremely sensitive to range uncertainties. The use of
Databáze: OpenAIRE