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Original Article

Korean Journal of Medical Physics 2016; 27(4): 232-235

Published online December 31, 2016

Copyright © Korean Society of Medical Physics.

Development Treatment Planning System Based on Monte-Carlo Simulation for Boron Neutron Capture Therapy

Moo-Sub Kim*, Kazuki Kubo, Hajime Monzen, Do-Kun Yoon*, Han-Back Shin*, Sunmi Kim*, Tae Suk Suh*

*Department of Biomedical Engineering and Research Institute of Biomedical Engineering, College of Medicine, The Catholic University of Korea, Seoul, Korea, Department of Radiation Oncology, Graduate School of Medical Science, Kinki University, Osaka, Japan

Received: November 10, 2016; Revised: December 22, 2016; Accepted: December 23, 2016

Abstract

The purpose of this study is to develop the treatment planning system (TPS) based on Monte-Carlo simulation for BNCT. In this paper, we will propose a method for dose estimation by Monte-Carlo simulation using the CT image, and will evaluate the accuracy of dose estimation of this TPS. The complicated geometry like a human body allows defining using the lattice function in MCNPX. The results of simulation such as flux or energy deposition averaged over a cell, can be obtained using the features of the tally provided by MCNPX. To assess the dose distribution and therapeutic effect, dose distribution was displayed on the CT image, and dose volume histogram (DVH) was employed in our developed system. The therapeutic effect can be efficiently evaluated by these evaluation tool. Our developed TPS could be effectively performed creating the voxel model from CT image, the estimation of each dose component, and evaluation of the BNCT plan.

KeywordsBNCT, Monte Carlo, MCNPX, Treatment planning system

Korean Society of Medical Physics

Vol.35 No.3
September 2024

pISSN 2508-4445
eISSN 2508-4453
Formerly ISSN 1226-5829

Frequency: Quarterly

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