Zobrazeno 1 - 10
of 64
pro vyhledávání: '"Dieter Schardt"'
Autor:
Dieter Schardt, M. C. Battaglia, J. M. Espino, María Isabel Gallardo, Antonio M. Lallena, M. A. Cortés-Giraldo, J. M. Quesada, Begoña Fernández
Publikováno v:
Digital.CSIC. Repositorio Institucional del CSIC
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This work presents the study of the optical density as function of absorbed dose for radiochromic films (model EBT3 Gafchromic) irradiated with protons of energies below 5 MeV. Once the calibration curves are obtained, the study of the optical densit
Publikováno v:
Physics in medicine and biology. 66(9)
There is increasing interest in using helium ions for radiotherapy, complementary to protons and carbon ions. A large number of patients were treated with
Autor:
Dieter Schardt, Jannis Dickmann, Uli Weber, Andreas Maier, Claudia Fournier, Gerhard Kraft, Patrick van Beek, Joachim Breckow
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 416:119-127
Summary In order to study the permeation i.e. the diffusion and solubility of radon gas in biological material, a new setup was constructed and a novel analysis was applied to obtain diffusion and solubility coefficients. Thin slabs of solid material
Publikováno v:
Physics in Medicine & Biology. 66:095009
There is increasing interest in using helium ions for radiotherapy, complementary to protons and carbon ions. A large number of patients were treated with 4He ions in the US heavy ion therapy project and novel 4He ion treatment programs are under pre
Autor:
C. La Tessa, M. De Rydt, Marco Pinto, M. Testa, J. Krimmer, Dieter Schardt, George Dedes, F. Roellinghoff, I Rinaldi, Stephan Brons, Nicolas Freud, Etienne Testa, Cédric Ray, Katia Parodi, R. Pleskac, M. Chevallier, Damien Prieels, M. Bajard, Denis Dauvergne, Jean Michel Létang
Publikováno v:
Physics in Medicine and Biology
Physics in Medicine and Biology, IOP Publishing, 2015, 60 (2), pp.565-594. ⟨10.1088/0031-9155/60/2/565⟩
Physics in Medicine and Biology, IOP Publishing, 2015, 60 (2), pp.565-594. ⟨10.1088/0031-9155/60/2/565⟩
International audience; Prompt-gamma emission detection is a promising technique for hadrontherapy monitoring purposes. In this regard, obtaining prompt-gamma yields that can be used to develop monitoring systems based on this principle is of utmost
Autor:
Emanuele Scifoni, Christoph Schuy, Stephan Brons, D. Izraeli, C. La Tessa, M. Rovituso, E Piasetzky, M. A. Cortés-Giraldo, Dieter Schardt, M. Toppi, Michael Kramer, Marco Durante, U. Weber
Recently, the use of 4He particles in cancer radiotherapy has been reconsidered as they potentially represent a good compromise between protons and 12C ions. The first step to achieve this goal is the development of a dedicated treatment planning sys
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3948fe1eeb2cf26e03b679c8595460e4
http://hdl.handle.net/11573/1469835
http://hdl.handle.net/11573/1469835
Autor:
Dieter Schardt
Publikováno v:
Springer Proceedings in Physics ISBN: 9783319211909
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::d87e7a1a0cc74213df557be4e0f1ec2a
https://doi.org/10.1007/978-3-319-21191-6_2
https://doi.org/10.1007/978-3-319-21191-6_2
Autor:
Alessandra Menicucci, Veronique Ferlet-Cavrois, Udo Weinand, Stefan K. Hoeffgen, Stefan Metzger, Petteri Nieminen, Reno Harboe-Sorensen, Christian Poivey, Wilhelm Lennartz, Markus Mathes, Jochen Kuhnhenn, R. Pleskac, Tobias Kuendgen, Chiara LaTessa, Marco Durante, Dieter Schardt
Publikováno v:
IEEE Transactions on Nuclear Science. 59:1161-1166
The ESA SEU-Monitor, a 2 Gbit DDR2 SDRAM and a 100 V n-channel power MOSFET have been irradiated at GSI with ions of energies from 80 to 1500 MeV/n. The measured SEE sensitivities are compared to low energy ( < 50 MeV /n ) data. The ESA SEU-Monitor a
Autor:
María Isabel Gallardo, J.A. Pavón, M. A. Cortés-Giraldo, Dieter Schardt, A. Perales, J. M. Quesada
Publikováno v:
Radiotherapy and Oncology. 123:S420-S421
Publikováno v:
Physics in Medicine and Biology. 54:N101-N106
Heavy-ion radiotherapy exploits the high biological effectiveness of localized energy deposition delivered by so-called Bragg-peak particles. Recent publications have challenged the established procedures to calculate biological effective dose distri