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1.
Rev Sci Instrum ; 83(2): 02A901, 2012 Feb.
Article in English | MEDLINE | ID: mdl-22380242

ABSTRACT

The charge breeding technique is used for radioactive ion beam (RIB) production in order of optimizing the re-acceleration of the radioactive element ions produced by a primary beam in a thick target. Charge breeding is achieved by means of a device capable of increasing the ion charge state from 1+ to a desired value n+. In order to get high intensity RIB, experiments with charge breeding of very high efficiency could be required. To reach this goal, the charge breeding simulation could help to optimize the high charge state production efficiency by finding more proper parameters for the radioactive 1+ ions. In this paper a device based on an electron beam ion source (EBIS) is considered. In order to study that problem, a code already developed for studying the ion selective containment in an EBIS with RF quadrupoles, BRICTEST, has been modified to simulate the ion charge state breeding rate for different 1+ ion injection conditions. Particularly, the charge breeding simulations for an EBIS with a hollow electron beam have been studied.

2.
Appl Radiat Isot ; 67(7-8 Suppl): S292-5, 2009 Jul.
Article in English | MEDLINE | ID: mdl-19406649

ABSTRACT

The boron neutron capture therapy is mainly suited in the treatment of some tumor kinds which revealed ineffective to the traditional radiotherapy. In order to take advantage of such a therapeutic modality in hospital environments, neutron beams of suitable energy and flux levels provided by compact size facilities are needed. The advantages and drawbacks of several neutron beams are here analysed in terms of therapeutic gains. In detail the GEANT-3/MICAP simulations show that high tumor control probability, with sub-lethal dose at healthy tissues, can be achieved by using neutron beams of few keV energy having a flux of about 10(9) neutrons/(cm(2)s). To produce such a neutron beam, the feasibility of a proton accelerator is investigated. In particular an appropriate choice of the radiofrequency parameters (modulation, efficiency of acceleration, phase shift, etc.) allows the development of relatively compact accelerators, having a proton beam current of 30 mA and an energy of 2 MeV, which could eventually lead to setting up of hospital-based neutron facilities.


Subject(s)
Boron Neutron Capture Therapy/instrumentation , Neutrons/therapeutic use , Particle Accelerators , Biophysical Phenomena , Brain Neoplasms/radiotherapy , Equipment Design , Fast Neutrons/therapeutic use , Humans , Monte Carlo Method , Phantoms, Imaging/statistics & numerical data , Protons
3.
G Ital Med Lav Ergon ; 25(3): 369-70, 2003.
Article in Italian | MEDLINE | ID: mdl-14582264

ABSTRACT

Normal human peripheral blood lymphocytes were irradiated for 10 or 5 min with frequencies from 1.5 to 2.0 GHz. The frequency of 1.8 GHz overlaps that of mobile phones and leads to a significant reduction of the T-cell mediated antibacterial activity.


Subject(s)
Electromagnetic Fields , Environmental Exposure , Lymphocytes/physiology , Lymphocytes/radiation effects , Humans
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