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Yu, Pei-Chieh; Chao, Tsi-Chian; Lee, Chung-Chi; Wu, Ching-Jung; Tung, Chuan-Jong, E-mail: cjtung@mail.cgu.edu.tw2010
AbstractAbstract
[en] In recent years the Henschke applicator has been widely used for gynecologic patients treated by brachytherapy in Taiwan. However, the commercial brachytherapy planning system did not properly evaluate the dose perturbation caused by the Henschke applicator. Since the European Society for Therapeutic Radiology and Oncology advised that the effect of source shielding should be incorporated into the brachytherapy planning system, it required calculation and comparison of the dose distribution around the applicator. This study used the Monte Carlo MCNP code to simulate the dose distribution in a water phantom that contained the Henschke applicator with one tandem and two ovoids. Three dwell positions of a high dose rate 192Ir source were simulated by including and excluding the applicator. The mesh tally option of the MCNP was applied to facilitate the calculation of a large number of tallies in the phantom. The voxel size effect and the charge particle equilibrium were studied by comparing the results calculated with different tally options. The calculated results showed that the brachytherapy planning system overestimated the rectal dose and that the shielding material in the applicator contributed more than 40% to the rectal dose.
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Source
11. international symposium on radiation physics: Frontiers in radiation physics and applications; Melbourne (Australia); 20-25 Sep 2009; S0168-9002(10)00178-6; Available from http://dx.doi.org/10.1016/j.nima.2010.01.079; Copyright (c) 2010 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Nuclear Instruments and Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment; ISSN 0168-9002;
; CODEN NIMAER; v. 619(1-3); p. 411-414

Country of publication
BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BODY, CALCULATION METHODS, DAYS LIVING RADIOISOTOPES, DIGESTIVE SYSTEM, DOSES, ELECTRON CAPTURE RADIOISOTOPES, EVALUATION, GASTROINTESTINAL TRACT, HEAVY NUCLEI, INTERNAL CONVERSION RADIOISOTOPES, INTESTINES, IRIDIUM ISOTOPES, ISOMERIC TRANSITION ISOTOPES, ISOTOPES, LARGE INTESTINE, MATERIALS, MEDICINE, MINUTES LIVING RADIOISOTOPES, MOCKUP, NUCLEAR MEDICINE, NUCLEI, ODD-ODD NUCLEI, ORGANS, RADIOISOTOPES, RADIOLOGY, RADIOTHERAPY, STRUCTURAL MODELS, THERAPY, YEARS LIVING RADIOISOTOPES
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