Korean J Med Phys.  2007 Jun;18(2):87-92.

Dosimetric Characteristics of a Thermal Neutron Beam Facility for Neutron Capture Therapy at HANARO Reactor

Affiliations
  • 1Radiation & Medical Science Research Center.
  • 2Department of Radiation Oncology, Korea Institute of Radiological & Medical Sciences. mskim@kcch.re.kr
  • 3HANARO Application Research Center, Korea Atomic Energy Research Institute.
  • 4Department of Electrophysics, Kwang Woon University.

Abstract

A thermal neutron beam facility utilizing a typical tangential beam port for Neutron Capture Therapy was installed at the HANARO, 30 MW multi-purpose research reactor. Mixed beams with different physical characteristics and relative biological effectiveness would be emitted from the BNCT irradiation facility, so a quantitative analysis of each component of the mixed beams should be performed to determine the accurate delivered dose. Thus, various techniques were applied including the use of activation foils, TLDs and ionization chambers. All the dose measurements were performed with the water phantom filled with distilled water. The results of the measurement were compared with MCNP4B calculation. The thermal neutron fluxes were 1.02E9 n/cm2 s and 6.07E8 n/cm2 s at 10 and 20 mm depth respectively, and the fast neutron dose rate was insignificant as 0.11 Gy/hr at 10 mm depth in water. The gamma-ray dose rate was 5.10 Gy/hr at 20 mm depth in water. Good agreement within 5%, has been obtained between the measured dose and the calculated dose using MCNP for neutron and gamma component and discrepancy with 14% for fast neutron flux. Considering the difficulty of neutron detection, the current study support the reliability of these results and confirmed the suitability of the thermal neutron beam as a dosimetric data for BNCT clinical trials.

Keyword

Neutron capture therapy; HANARO reactor; Neutron dosimetry; Ionization chamber

MeSH Terms

Fast Neutrons
Neutron Capture Therapy*
Neutrons*
Relative Biological Effectiveness
Water
Water
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