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K Ishimatsu

Publications and source records attributed to K Ishimatsu.

7 recordsLinked to original sources

[Leakage radiations in a medical electron accelerator facility--calculation of neutron doses in the facility].

Neutron doses often come dominant in mazes of electron accelerator facilities in which X-rays of energies more than 10 MV are produced. A simple analytical method to calculate neutron doses in such a facility is developed. In the calculation procedure, it is assumed that the irradiation room is spherical in shape and the maze is cylindrical. Multiple reflection of neutrons is also considered using the albedo concept in the calculation. The procedure allows to exist a hanging wall over the entrance of the irradiation room and also multiple legs in the maze. All the parameters used in the calculation are given definitely in the procedure, and any experiment is unnecessary to determine value of the parameters. Comparison of the calculated results with experimental ones will be described in the following report.

Hospital Departments

[Leakage radiations in a medical electron accelerator facility--measurement of neutrons and comparison with calculation].

Neutron dose equivalent rates are measured in the irradiation room and the maze of a medical electron accelerator facility. An m-counter used for measurement is associated with a gate circuit to reject piled up signals caused by pulsed X-rays, so that it is possible to measure the neutrons without obstruction by the piled up signals even in the irradiation room. Counting loss of neutrons is mathematically corrected, and the correction factor comes nearly equal to 1.5 at dose points close to the entrance to the irradiation room when 14 MV X-rays are generated. The measurement in the maze agrees with the calculation reported in the preceding report in a factor less than 1.5 except for dose points close to the entrance to the irradiation room.

Hospital Departments

[Leakage radiations in a medical electron accelerator facility--X-rays and capture gamma-rays].

Absorbed dose rates of photons are measured in the maze of a medical electron accelerator facility. Radiations in the maze include high energy recoiled electrons other than low energy reflected X-rays. An ionization chamber for low energy X-rays is used for measurement, and is put in a build-up cap thick enough to obstruct the recoiled electrons of which contribution to the chamber output comes sometimes equal to that of X-rays. Dose rates of capture gamma-rays in the maze are estimated applying the calculation of neutron dose equivalent rates reported in the preceding paper. It is proved that capture gamma-rays are dominant in the dose rates measured in the maze at 14 MV X-ray generation. The estimated absorbed dose rates of total photons including capture gamma-rays and reflected X-rays agree with the measured ones in the range from +10% to -27%.

Electrons