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CERN Accelerating science

CERN Document Server 4 records found  Search took 0.68 seconds. 
1.
Explorative Studies of an Innovative Superconducting Gantry / Pullia, M G (CNAO, Milan) ; Donetti, M (CNAO, Milan) ; Felcini, E (CNAO, Milan) ; Frisella, G (CNAO, Milan) ; Mereghetti, A (CNAO, Milan) ; Mirandola, A (CNAO, Milan) ; Pella, A (CNAO, Milan) ; Savazzi, S (CNAO, Milan) ; Dassa, L (CERN) ; Karppinen, M (CERN) et al.
The Heavy Ion Therapy Research Integration plus (HITRIplus) is a European project that aims to integrate and propel research and technologies related to cancer treatment with heavy ions beams. Among the ambitious goals of the project, a specific work package includes the design of a gantry for carbon ions, based on superconducting magnets. [...]
2022 - 4 p. - Published in : JACoW IPAC 2022 (2022) 2966-2969 Fulltext: PDF;
In : 13th International Particle Accelerator Conference (IPAC 2022), Bangkok, Thailand, 12 - 17 Jun 2022, pp.2966-2969
2.
3D energy deposition measurements with the GEMPix detector in a water phantom for hadron therapy / Leidner, J (CERN) ; Ciocca, M ; George, S P ; Mirandola, A ; Murtas, F ; Rimoldi, A ; Silari, M ; Tamborini, A
In this paper we present 3D measurements of the energy deposition by a clinical carbon ion beam in a water phantom. Conventionally, these measurements are performed with an array of ionization chambers and used for quality assurance. [...]
2018 - Published in : JINST 13 (2018) P08009-P08009
3.
Dose prescription in carbon ion radiotherapy: How to compare two different RBE-weighted dose calculation systems / Molinelli, Silvia (CNAO, Milan) ; Magro, Giuseppe (CNAO, Milan) ; Mairani, Andrea (CNAO, Milan ; Heidelberg U.) ; Matsufuji, Naruhiro (NIRS, Chiba) ; Kanematsu, Nobuyuki (NIRS, Chiba) ; Inaniwa, Taku (NIRS, Chiba) ; Mirandola, Alfredo (CNAO, Milan) ; Russo, Stefania (CNAO, Milan) ; Mastella, Edoardo (CNAO, Milan) ; Hasegawa, Azusa (NIRS, Chiba) et al.
Background and purpose: In carbon ion radiotherapy (CIRT), the use of different relative biological effectiveness (RBE) models in the RBE-weighted dose $(D_{RBE})$ calculation can lead to deviations in the physical dose $(D_{phy})$ delivered to the patient. Our aim is to reduce target $D_{phy}$ deviations by converting prescription dose values. [...]
2016 - 6 p. - Published in : Radiother. Oncol. 120 (2016) 307-312
4.
Dosimetric accuracy of a treatment planning system for actively scanned proton beams and small target volumes: Monte Carlo and experimental validation / Magro, G (Pavia U. ; INFN, Pavia ; CNAO, Pavia) ; Molinelli, S (CNAO, Pavia) ; Mairani, A (CNAO, Pavia ; HIT, Heidelberg) ; Mirandola, A (CNAO, Pavia) ; Panizza, D (CNAO, Pavia) ; Russo, S (CNAO, Pavia) ; Ferrari, A (CERN) ; Valvo, F (CNAO, Pavia) ; Fossati, P (CNAO, Pavia ; Milan U.) ; Ciocca, M (CNAO, Pavia)
This study was performed to evaluate the accuracy of a commercial treatment planning system (TPS), in optimising proton pencil beam dose distributions for small targets of different sizes (5–30 mm side) located at increasing depths in water. The TPS analytical algorithm was benchmarked against experimental data and the FLUKA Monte Carlo (MC) code, previously validated for the selected beam-line. [...]
2015 - Published in : Phys. Med. Biol. 60 (2015) 6865-6880

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1 Mirandola, Alfredo
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