• Title of article

    Enhancement of a 252Cf-based neutron beam via subcritical multiplication for neutron capture therapy

  • Author/Authors

    C. K. Wang، نويسنده , , J. F. Zino، نويسنده , , G. Kessler، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2000
  • Pages
    4
  • From page
    811
  • To page
    814
  • Abstract
    Previous studies indicated that an epithermal-neutron beam based on bare 252Cf is not feasible for neutron capture therapy (NCT). It was reported that a clinically useful epithermal-neutron beam requires a minimum of 1.0 g of 252Cf, which is more than twice the US current annual supply. However, it was reasoned that the required quantity of 252Cf could be dramatically reduced when used with a subcritical multiplying assembly (SMA). This reasoning is based on the assumption that the epithermal-neutron beam intensity for NCT is directly proportional to the fission neutron population, and that the neutron multiplying factor of the SMA can be estimated by image. We have performed detailed Monte Carlo calculations to investigate the validity of the above reasoning. Our results show that image grossly overestimates the beam enhancement factor for NCT. For example, Monte Carlo calculations predict a beam enhancement factor of 6.0 for an optimized SMA geometry with keff=0.968. This factor is much less than 31 predicted by image. The overestimation is due to the fact that most of the neutrons produced in the SMA are self-shielded, whereas self-shielding is negligible in a bare 252Cf source. Since the beam intensity of a 0.1 g 252Cf with the optimized SMA enhancement is still more than an order of magnitude too low compared to the existing reactor beams, we conclude that the enhancement via an SMA for a 252Cf-based epithermal-neutron beam is inadequate for NCT.
  • Keywords
    neutron capture therapy , Monte Carlo , 252Cf , Subcritical multiplication
  • Journal title
    Applied Radiation and Isotopes
  • Serial Year
    2000
  • Journal title
    Applied Radiation and Isotopes
  • Record number

    540833