Neutron dosimetry in high energy X-ray beams of medical accelerators
Дозиметрия нейтронов в пучках высокоэнергетического рентгеновского излучения медицинских ускорителей
1979-07-01
SCID: 54.1/js2hd9wu
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electrochemical etchingmedical accelerator beamsneutron dose equivalentneutron dosimetrypolycarbonate foils
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Abstract (AI)
High energy X-ray beams from medical accelerators are used in cancer therapy. In such beams, neutrons are also produced due to photon-neutron interactions in the target material, collimator and beam flattening filter. The feasibility of employing fast-neutron-induced recoil particle tracks in polycarbonate foils developed by the electrochemical etching (ECE) method for the dosimetry of such neutrons was investigated. The experiments were carried out in, and out of, the beam of a Varian Clinac-18, an Allis-Chalmers 25 MeV betatron and a Brown Boveri 45 MeV betatron. Neutron dose equivalents were found both as a function of the photon dose and of the distance away from the centre of the beam. The neutron dose equivalent was found to be 0.6 and 1.3% of the X-ray dose at the centre position of the beam for a TSD = 100 cm and a 10 x 10 cm2 field for the 25 and 45 MeV betatrons respectively. Although the dosemeter showed adequate sensitivity to neutrons in the beam of the betatrons, it showed insensitivity to neutrons in the beam of the Clinac-18 which has a softer spectrum than the neutron energy threshold of the dosemeter. It can be concluded that this dosimetry method provides a new approach with a number of advantages compared to some other existing techniques for such measurements above the energy threshold of the dosemeter.
Key Findings
1
Above its neutron energy threshold, the method offers a promising alternative with advantages over some existing neutron dosimetry techniques.
2
At beam center with TSD = 100 cm and a 10 × 10 cm² field, neutron dose equivalents were 0.6% and 1.3% of the X-ray dose for the 25 and 45 MeV betatrons, respectively.
3
Neutron dose equivalents were measured inside and outside beams from a Varian Clinac-18 and 25 and 45 MeV betatrons, as functions of photon dose and radial distance.
4
The dosimeter had adequate sensitivity for betatron neutron beams but was insensitive to the softer neutron spectrum from the Clinac-18 because energies were below its detection threshold.
5
The study investigates electrochemically etched polycarbonate foils as dosimeters for fast neutrons produced in high-energy medical accelerator X-ray beams.
Research Object
Neutrons produced in high-energy X-ray beams of medical accelerators
Research Subject
Neutron dose equivalents and their dependence on photon dose, distance from the beam centre, and neutron energy spectrum, measured using fast-neutron-induced recoil tracks in electrochemically etched polycarbonate foils
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1979-07-01
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