Bair, 1981, Neutron yields from the 4–12MeV proton bombardment of 11B, 13C and 18O as related to the production of 11C, 13N and 18F, App. Radiat. Isot., 32, 389, 10.1016/S0020-708X(81)81005-8
Ceballos, C., Esposito, J., 2009. The BSA modeling for the accelerator-based BNCT facility at INFN LNL for treating shallow skin melanoma. App. Radiat. Isot., this issue, doi:10.1016/j.apradiso.2009.03.074.
Ciavola, G., Celona, L., Gammino, S., 2001. First beam from the TRASCO intense proton source (TRIPS) at INFN-LNS. In: Lucas, P., Webber, S. (Eds.), Proceedings of the PAC, Chicago, USA, pp. 2406–2408.
Colonna, 1999, Measurements of low-energy (d,n) reactions for BNCT, Med. Phys., 26, 793, 10.1118/1.598599
Esposito, J., et al., 2008. The SPES-BNCT project: investigation of radiation damage effects in Be neutron converter prototype, LNL Annual Report, INFN-LNL-222(2008), ISSN 1828–8545, pp. 173–174.
Fagotti, E., Palmieri, A., 2007. Results of SPES source improvements. LNL Annual Report, INFN-LNL-222(2008), ISSN 1828–8545, pp. 171–172.
Makhankov, A., et al., 2004. An accelerator based thermal neutron source for BNCT application. In: Proceedings of EPAC 2004, Lucerne, Switzerland. European Physical Society. Accelerator Group (EPS-AG), ISBN 92-9083-231-2, pp. 2745–2747 (Web version).
Pisent, A., Comunian, M., Palmieri, A., Fagotti, E., Lamanna, G.V., Mathot, S., 2004. The TRASCO SPES-RFQ. In: Proceedings of the LINAC, JaCoW, Lübeck, Germany. pp. 69–71.
Prete, G., 2007. SPES advanced exotic ion beam facility at LNL. Technical Design Report, INFN-LNL-220.
Taskaev, S., Bayanov, B., Belov, V., Zhoorov, E., 2006. Development of lithium target for accelerator based neutron capture therapy. In: Nakagawa, Y., Kobayashi, T., Fukuda, H. (Eds.). Advances in Neutron Capture Therapy 2006. Proceedings of ICNCT-12, Takamatsu. Japanese International Society for Neutron Capture Therapy, ISBN 4-9903242-0-X, pp. 81–84.