3D treatment planning systems

被引:3
|
作者
Saw, Cheng B. [1 ]
Li, Sicong [2 ]
机构
[1] NROC, Dept Radiat Oncol, Dunmore, PA 18512 USA
[2] Univ Nebraska Med Ctr, Dept Radiat Oncol, Omaha, NE 68198 USA
关键词
3D treatment planning; Conformal radiation therapy; Intensity-modulated radiation therapy; Treatment planning systems; RADIATION-THERAPY; COMPUTER;
D O I
10.1016/j.meddos.2018.03.002
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Three-dimensional (3D) treatment planning systems have evolved and become crucial components of modern radiation therapy. The systems are computer-aided designing or planning softwares that speed up the treatment planning processes to arrive at the best dose plans for the patients undergoing radiation therapy. Furthermore, the systems provide new technology to solve problems that would not have been considered without the use of computers such as conformal radiation therapy (CRT), intensity-modulated radiation therapy (IMRT), and volumetric modulated arc therapy (VMAT). The 3D treatment planning systems vary amongst the vendors and also the dose delivery systems they are designed to support. As such these systems have different planning tools to generate the treatment plans and convert the treatment plans into executable instructions that can be implemented by the dose delivery systems. The rapid advancements in computer technology and accelerators have facilitated constant upgrades and the introduction of different and unique dose delivery systems than the traditional C-arm type medical linear accelerators. The focus of this special issue is to gather relevant 3D treatment planning systems for the radiation oncology community to keep abreast of technology advancement by assess the planning tools available as well as those unique "tricks or tips" used to support the different dose delivery systems. (C) 2018 American Association of Medical Dosimetrists.
引用
收藏
页码:103 / 105
页数:3
相关论文
共 50 条
  • [21] 3D CT simulation and treatment planning system for radiotherapy
    Yang, YL
    Liu, Q
    ICIA 2004: PROCEEDINGS OF 2004 INTERNATIONAL CONFERENCE ON INFORMATION ACQUISITION, 2004, : 436 - 439
  • [22] Treatment planning of microbrachytherapy with 3D NSGA-II
    Brown, R.
    Bardies, M.
    Franceries, X.
    EMBEC & NBC 2017, 2018, 65 : 450 - 453
  • [23] 3D Collision Viewer for Proton Therapy Treatment Planning
    Hojo, Y.
    Gillin, M.
    Suzuki, K.
    Wu, R.
    Zhu, X.
    MEDICAL PHYSICS, 2013, 40 (06)
  • [24] Phoenix 2000, a 3D conformal treatment planning system
    Luo, ZM
    Yang, DL
    Wu, ZW
    Bai, S
    Fu, YC
    Hou, Q
    Wang, YG
    Gou, CJ
    Yang, ZM
    Wen, XM
    Yang, HL
    Xia, XY
    Shen, GQ
    USE OF COMPUTERS IN RADIATION THERAPY, 2000, : 265 - 265
  • [25] qDose, a 3D Treatment Planning System for Molecular Radiotherapy
    Bacelar, A. M. Denis
    Chittenden, S.
    Divoli, A.
    Gear, J.
    Flux, G.
    EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2012, 39 : S351 - S351
  • [26] 3D treatment planning on helical tomotherapy delivery system
    Saw, Cheng B.
    Katz, Leah
    Gillette, Carol
    Koutcher, Lawrence
    MEDICAL DOSIMETRY, 2018, 43 (02) : 159 - 167
  • [27] Quality improvement in radiation therapy by 3D treatment planning
    Huang, Y
    West, S
    Antoine, J
    PROCEEDINGS OF THE 22ND ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-4, 2000, 22 : 518 - 519
  • [28] Routine 3D treatment planning: Opportunities, challenges, and hazards
    Marks, LB
    Bentel, G
    Light, K
    Zhou, SM
    Sibley, G
    Anscher, M
    ONCOLOGY-NEW YORK, 2000, 14 (08): : 1191 - 1201
  • [29] 3D volume visualization in remote radiation treatment planning
    Yun, DY
    Garcia, HMC
    Mun, SK
    Rogers, JE
    Tohme, W
    Carlson, WE
    May, S
    Yagel, R
    VISUAL DATA EXPLORATION AND ANALYSIS III, 1996, 2656 : 23 - 32
  • [30] 3D treatment planning system-Pinnacle system
    Xia, Ping
    Murray, Eric
    MEDICAL DOSIMETRY, 2018, 43 (02) : 118 - 128