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  • [J Radiol Prot.] POLY2TET: a computer program for conversion of computational human phantoms from polygonal mesh to tetrahedral mesh

    [J Radiol Prot.] POLY2TET: a computer program for conversion of computational human phantoms from polygonal mesh to tetrahedral mesh POLY2TET: Polygonal Mesh를 Tetrahedral Mesh 전산인체팬텀으로 변환하기 위한 컴퓨터 프로그램

    한양대 / 한혜진, 김찬형*

  • 출처
    J Radiol Prot.
  • 등재일
    2020 Sep 23
  • 저널이슈번호
    40(4):962-979. doi: 10.1088/1361-6498/abb360.
  • 내용

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    Abstract
    As a geometrical format for computational human phantoms, tetrahedral mesh (TM) is known to have significant advantages over polygonal mesh (PM), including higher compatibility with Monte Carlo radiation transport codes, higher computation speed, and the capability of modeling heterogeneous density variation in an organ of the phantom. In the present study, a computer program named POLY2TET was developed to convert the format of computational human phantoms from PM to TM and generate a sample source code or input file, as applicable, for the converted phantom to be used in some general-purpose Monte Carlo radiation transport codes (i.e. Geant4, PHITS, and MCNP6). The developed program was then tested using four existing high-fidelity PM phantoms. The computation speed, memory requirement, and initialisation time of the generated TM phantoms were also measured and compared with those of the original PM phantoms in Geant4. From the results of our test, it was concluded that the developed program successfully converts PM phantoms into the TM format. The organ doses calculated using the generated TM phantom for the three Monte Carlo codes all produced essentially identical dose values to those for the original PM phantoms in Geant4. The comparison of computation speed showed that compared to the original PM phantoms in Geant4, the TM phantoms in the three Monte Carlo codes were much faster in transporting the particles considered in the present study, i.e. by up to ∼2600 times for electron beams simulated in PHITS. The comparison of the memory requirement showed that the TM phantoms required more memory than the original PM phantoms, but, except for MCNP6, the memory required for the TM phantoms was still less than 12 GB, which typically is available in personal computers these days. For MCNP6, the required memory was much higher, i.e. 60-70 GB.

     

     

    ICRP Task Group 103에서 제작한 성인 남녀에 대한 메시형 표준 팬텀 단면

     

     

    Affiliations

    Haegin Han  1 , Yeon Soo Yeom, Chansoo Choi, Sungho Moon, Bangho Shin, Sangseok Ha, Chan Hyeong Kim

    1 Department of Nuclear Engineering, Hanyang University, Seoul, Republic of Korea.

  • 연구소개
    몬테칼로 선량계산을 위한 인체전산팬텀 개발 연구 분야에서는 사면체 메시형 팬텀이 가장 발전된 형태의 인체전산팬텀으로서 인정받고 있으며, 국제방사선방호위원회(ICRP)에서도 최근 성인남녀에 대한 사면체 메시형 팬텀을 제작한 바 있습니다(ICRP-145 보고서). 이에, 많은 관련분야 연구팀에서 사면체 메시형 팬텀을 활용한 연구를 진행하고자 하나, 이를 처음 접하는 연구팀에서는 사면체 메시형 팬텀을 제작하는데 어려움을 겪는 경우가 많다고 합니다. 본 연구 논문에서는 이와 같은 문제를 해결하고자 POLY2TET 프로그램을 제작 및 배포하였으며, 이는 사면체 메시에 대한 별다른 배경 지식 없이도 손쉽게 사면체 메시형 팬텀을 제작하고 이를 이용한 몬테칼로 선량계산 코드까지 자동으로 출력할 수 있도록 하는 프로그램입니다.
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