CERN Accelerating science

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1.
Optimal Neutron Source and Beam Shaping Assembly for Boron Neutron Capture Therapy / Vujic, J L
There were three objectives to this project: (1) The development of the 2-D Swan code for the optimization of the nuclear design of facilities for medical applications of radiation, radiation shields, blankets of accelerator-driven systems, fusion facilities, etc. [...]
DOE-ID-13642. - 2003. - 126 p.
fulltext
2.
User's manual of a supporting system for treatment planning in boron neutron capture therapy. JAERI computational dosimetry system / Kumada, H
A boron neutron capture therapy (BNCT) with epithermal neutron beam is expected to treat effectively for malignant tumor that is located deeply in the brain. [...]
JAERI-DATA-CODE-2002-018. - 2002. - 168 p.
fulltext
3.
Design and construction of an optimized neutron beam shaping assembly for Boron Neutron Capture Therapy at the Tandar accelerator / Burlon, A ; Kreiner, A J ; Valda, A A ; Minsky, D M ; Somacal, H
2007 - Published in : AIP Conf. Proc.: 884 (2007) , pp. 465-467 External link: Published version from AIP
In : 6th Latin American Symposium On Nuclear Physics And Applications, Iguazu, Argentina, 3 - 7 Oct 2005, pp.465-467
4.
In vitro biological effectiveness of JRR-4 epithermal neutron beam. Experiment under free air beam and in water phantom. Cooperative research / Yamamoto, T
The surviving curve and the biological effectiveness factor of dose components generated in boron neutron capture therapy (BNCT) were separately determined in neutron beams at Japan Research Reactor No.4. [...]
JAERI-RESEARCH-2002-011. - 2002. - 66 p.
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5.
Development of the JAERI computational dosimetry system (JCDS) for boron neutron capture therapy. Cooperative research / Kumada, H
The Neutron Beam Facility at JRR-4 enables us to carry out boron neutron capture therapy with epithermal neutron beam. [...]
JAERI-TECH-2003-002. - 2003. - 62 p.
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6.
Production of a faithful realistic phantom to human head and thermal neutron flux measurement on the brain surface. Cooperative research / Yamamoto, K ; Endo, K ; Kishi, T ; Kumada, H ; Matsumura, A ; Nose, T ; Torii, Y ; Uchiyama, J ; Yamamoto, T
Thermal neutron flux is determined using the gold wires in current BNCT irradiation, so evaluation of arbitrary points after the irradiation is limited in the quantity of these detectors. [...]
JAERI-TECH-2002-092.
- 2002. - 30 p.
fulltext
7.
Conference on Accelerator-based Neutron Sources for Boron Neutron Capture Therapy - Accelerator-based Neutron Sources for Boron Neutron Capture Therapy   11 - 14 Sep 1994  - Jackson, WY, USA  .-
1994
8.
Conceptual Design of an RFQ Accelerator-Based Neutron Source for Boron Neutron-Capture Therapy / Wangler, T P ; Bhatia, T S ; Blue, T E ; Gahbauer, R A ; Stovall, J E ; Wang, C K C
1989 External link: Published version from JACoW
In : 13th IEEE Particle Accelerator Conference, Chicago, IL, USA, 20 - 23 Mar 1989, pp.678
9.
Derivation of Collins' formulas for beam-shape distortion due to sextupoles using Hamiltonian method / Ng, K Y
FERMILAB-TM-1281.
- 1984. - 12 p.
CERN library copies
10.
Proton Linacs for Boron Neutron Capture Therapy / Lennox, A J
1993 External link: Published version from JACoW
In : 15th IEEE Particle Accelerator Conference, Washington, DC, USA, 17 - 20 May 1993, pp.1756

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