CERN Accelerating science

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1.
Design of a novel linear accelerator for carbon ion therapy / Bencini, Vittorio
Hadron therapy has been first proposed in 1946 by Robert Wilson as an advanced form of radiotherapy [...]
CERN-THESIS-2019-301 - 138 p.

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2.
Book cover Proton and carbon ion therapy / Charlie Ma, C-M (ed.) ; Lomax, Tony (ed.)
Proton and Carbon Ion Therapy is an up-to-date guide to using proton and carbon ion therapy in modern cancer treatment [...]
Boca Raton, FL : CRC Press, 2013. - 224 p.


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3.
Book cover Monte Carlo techniques in radiation therapy / Seco, Joao (ed.) ; Verhaegen, Frank (ed.)
Modern cancer treatment relies on Monte Carlo simulations to help radiotherapists and clinical physicists better understand and compute radiation dose from imaging devices as well as exploit four-dimensional imaging data [...]
Boca Raton, FL : CRC Press, 2013. - 318 p.


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4.
Union of light ion therapy centers in Europe (ULICE EC FP7) – Objectives and achievements of joint research activities / Pötter, Richard (Med. U. of Vienna, Spitalgasse) ; Balosso, Jaques (U. Grenoble Alpes ; Centre Hospitalier Universitaire Grenoble Alpes) ; Baumann, Michael (OncoRay, Dresden ; TU, Dresden (main) ; HZDR, Dresden ; DKTK, Dresden ; Heidelberg, Inst. Radiology) ; Bert, Christoph (U. Erlangen-Nuremberg (main)) ; Davies, Jim (U. Oxford (main)) ; Enghardt, Wolfgang (OncoRay, Dresden ; TU, Dresden (main) ; HZDR, Dresden ; DKTK, Dresden ; Heidelberg, Inst. Radiology) ; Fossati, Piero (EBG MedAustron GmbH, Wiener Neustadt) ; Harris, Steve (U. Oxford (main)) ; Jones, Bleddyn (U. Oxford (main)) ; Krämer, Michael (Darmstadt, GSI) et al. /ULICE
Under the umbrella of the European Network for Light Ion Therapy (ENLIGHT), the project on Union of Light Ion Centers in Europe (ULICE), which was funded by the European Commission (EC/FP7), was carried out from 2009 to 2014. Besides the two pillars on Transnational Access (TNA) and Networking Activities (NA), six work packages formed the pillar on Joint Research Activities (JRA). [...]
2018 - 18 p. - Published in : Radiotherapy Oncology 128 (2018) 83-100
5.
A Monte Carlo-based treatment-planning tool for ion beam therapy / Böhlen, T T (CERN ; Stockholm U. ; Karolinska Inst., Stockholm) ; Bauer, J (Heidelberg Ion-Beam Therapy Center, Heidelberg ; Heidelberg University Clinic) ; Dosanjh, M (CERN) ; Ferrari, A (CERN) ; Haberer, T (Heidelberg Ion-Beam Therapy Center, Heidelberg) ; Parodi, K (Heidelberg Ion-Beam Therapy Center, Heidelberg ; Heidelberg University Clinic ; Munich U.) ; Patera, V (U. Rome La Sapienza) ; Mairan, A (CNAO, Pavia)
Ion beam therapy, as an emerging radiation therapy modality, requires continuous efforts to develop and improve tools for patient treatment planning (TP) and research applications. Dose and fluence computation algorithms using the Monte Carlo (MC) technique have served for decades as reference tools for accurate dose computations for radiotherapy. [...]
2013 - Published in : J. Radiat. Res. 54 (2013) i77-i81 Oxford Univ. Press Open Access article: PDF;
In : PARTNER, pp.i77-i81
6.
Particles that fight cancer: the use of protons and carbon ions in cancer therapy
Particles that fight cancer: the use of protons and carbon ions in cancer therapy Cancer is a major societal issue. A key challenge for cancer therapy is the complex and multifaceted nature of the disease, which calls for personalised treatment [...]
2014 - Streaming video. Medical Applications Seminars External link: Event details In : Particles that fight cancer: the use of protons and carbon ions in cancer therapy
7.
New Trends in Proton and Carbon Therapy Linacs / Benedetti, Stefano (CERN)
In the last years, many developments have contributed to make feasible an all linac solution for proton and carbon ion therapy, with typical output energies of about 200 MeV and 400 MeV/u, respectively. The efficient beam matching of the source to the high-energy linacs, operating at 3 GHz, represents one of the major challenges. [...]
CERN-ACC-2018-194.- 2018 - 6 p. - Published in : 10.18429/JACoW-LINAC2018-TH1P03 Fulltext: PDF;
In : 29th International Linear Accelerator Conference, Beijing, China, 16 - 21 Sep 2018, pp.TH1P03
8.
GaToroid: A Novel Superconducting Compact and Lightweight Gantry for Hadron Therapy / Bottura, Luca (speaker) (CERN)
Luca Bottura, who leads CERN’s Magnets, Superconductors and Cryostats group, will illustrate his innovative design for a hadron therapy gantry based upon a toroidal magnet. Gantry systems represent a major technical challenge for treating tumours with protons and other ions: gantries are essential to steer the beam around the patient in order to irradiate the tumour from different angles, thus allowing treatment modalities closer to the most advanced conventional radiotherapy techniques. The cost and complexity of the infrastructures required for hadron therapy is a limiting factor for its exploitation. In proton therapy, gantries are nowadays almost a standard feature, but are still massive and complicated pieces of engineering, and they represent a sizeable fraction of the total cost of the installation [...]
2018 - 1:14:17. KT Seminars External link: Event details In : GaToroid: A Novel Superconducting Compact and Lightweight Gantry for Hadron Therapy
9.
Cancer therapy with particle accelerators / Amaldi, Ugo
This review paper is devoted to conventional radiotherapy and to hadron therapy. In this therapeutical modality, proposed by R. [...]
Geneva : CERN, 1999 - Published in : Nucl. Phys. A 654 (1999) 375-99
10.
John Adams Lecture | 120 Years of Accelerators that Heal | 3 December
John Adams Lecture | 120 Years of Accelerators that Heal | 3 December
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120 Years of Accelerators that Heal, Dr Ugo Amaldi, Technische Universität München and TERA Foundation.     Tuesday 3 December 2013 at 2 p.m. [...]
BUL-EV-2013-062.- 2013 - Published in : CERN Bulletin 46/2013 47/2013 48/2013 49/2013

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