Treatment planning of scanned proton beams in RayStation

被引:24
作者
Janson, Martin [1 ,2 ]
Glimelius, Lars [1 ]
Fredriksson, Albin [1 ]
Traneus, Erik [1 ]
Engwall, Erik [1 ]
机构
[1] RaySearch Labs AB, Stockholm, Sweden
[2] Box 45169, S-45169 Stockholm, Sweden
关键词
Proton therapy; Treatment planning; RayStation; Robust optimization; 4D optimization; Monte Carlo dose calculation; Proton arc therapy; Deep learning auto -planning; Robustness evaluation; Scripting; MULTIPLE-SCATTERING; DOSE CALCULATION; OPTIMIZATION; THERAPY; UNCERTAINTIES; RANGE; SENSITIVITY; SYSTEM; DEPTH; MODEL;
D O I
10.1016/j.meddos.2023.10.009
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The use of scanned proton beams in external beam radiation therapy has seen a rapid development over the past decade. This technique places new demands on treatment planning, as compared to conventional photon-based radiation therapy. In this article, several proton specific functions as implemented in the treatment planning system RayStation are presented. We will cover algorithms for energy layer and spot selection, basic optimization including the handling of spot weight limits, optimization of the linear energy transfer (LET) distribution, robust optimization including the special case of 4D optimization, proton arc planning, and automatic planning using deep learning. We will further present the Monte Carlo (MC) proton dose engine in RayStation to some detail, from the material interpretation of the CT data, through the beam model parameterization, to the actual MC transport mechanism. Useful tools for plan evaluation, including robustness evaluation, and the versatile scripting interface are also described. The overall aim of the paper is to give an overview of some of the key proton planning functions in RayStation, with example usages, and at the same time provide the details about the underlying algorithms that previously have not been fully publicly available. (c) 2023 The Authors. Published by Elsevier Inc. on behalf of American Association of Medical Dosimetrists. This is an open access article under the CC BY-NC-ND license ( http://creativecommons.org/licenses/by-nc-nd/4.0/ )
引用
收藏
页码:2 / 12
页数:11
相关论文
共 50 条
[31]   Investigating the impact of alpha/beta and LETd on relative biological effectiveness in scanned proton beams: An in vitro study based on human cell lines [J].
Mara, Elisabeth ;
Clausen, Monika ;
Khachonkham, Suphalak ;
Deycmar, Simon ;
Pessy, Clara ;
Doerr, Wolfgang ;
Kuess, Peter ;
Georg, Dietmar ;
Gruber, Sylvia .
MEDICAL PHYSICS, 2020, 47 (08) :3691-3702
[32]   Analytical incorporation of fractionation effects in probabilistic treatment planning for intensity-modulated proton therapy [J].
Wahl, Niklas ;
Hennig, Philipp ;
Wieser, Hans-Peter ;
Bangert, Mark .
MEDICAL PHYSICS, 2018, 45 (04) :1317-1328
[33]   Characterization of a commercial scintillation detector for 2-D dosimetry in scanned proton and carbon ion beams [J].
Russo, S. ;
Mirandola, A. ;
Molinelli, S. ;
Mastella, E. ;
Vai, A. ;
Magro, G. ;
Mairani, A. ;
Boi, D. ;
Donetti, M. ;
Ciocca, M. .
PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2017, 34 :48-54
[34]   A single-field integrated boost treatment planning technique for spot scanning proton therapy [J].
Zhu, Xiaorong Ronald ;
Poenisch, Falk ;
Li, Heng ;
Zhang, Xiaodong ;
Sahoo, Narayan ;
Wu, Richard Y. ;
Li, Xiaoqiang ;
Lee, Andrew K. ;
Chang, Eric L. ;
Choi, Seungtaek ;
Pugh, Thomas ;
Frank, Steven J. ;
Gillin, Michael T. ;
Mahajan, Anita ;
Grosshans, David R. .
RADIATION ONCOLOGY, 2014, 9
[35]   Accelerated robust optimization algorithm for proton therapy treatment planning [J].
Buti, Gregory ;
Souris, Kevin ;
Montero, Ana M. Barragan ;
Cohilis, Marie ;
Lee, John A. ;
Sterpin, Edmond .
MEDICAL PHYSICS, 2020, 47 (07) :2746-2754
[36]   GATED IRRADIATION WITH SCANNED PARTICLE BEAMS [J].
Bert, Christoph ;
Gemmel, Alexander ;
Saito, Nami ;
Rietzel, Eike .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2009, 73 (04) :1270-1275
[37]   Robust treatment planning in proton therapy [J].
Sterpin, E. ;
Barragan, A. ;
Souris, K. ;
Lee, J. A. .
CANCER RADIOTHERAPIE, 2016, 20 (6-7) :523-529
[38]   QUANTIFICATION OF THE RELATIVE BIOLOGICAL EFFECTIVENESS FOR ION BEAM RADIOTHERAPY: DIRECT EXPERIMENTAL COMPARISON OF PROTON AND CARBON ION BEAMS AND A NOVEL APPROACH FOR TREATMENT PLANNING [J].
Elsaesser, Thilo ;
Weyrather, Wilma K. ;
Friedrich, Thomas ;
Durante, Marco ;
Iancu, Gheorghe ;
Kraemer, Michael ;
Kragl, Gabriele ;
Brons, Stephan ;
Winter, Marcus ;
Weber, Klaus-Josef ;
Scholz, Michael .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2010, 78 (04) :1177-1183
[39]   End-to-end tests using alanine dosimetry in scanned proton beams [J].
Carlino, A. ;
Gouldstone, C. ;
Kragl, G. ;
Traneus, E. ;
Marrale, M. ;
Vatnitsky, S. ;
Stock, M. ;
Palmans, H. .
PHYSICS IN MEDICINE AND BIOLOGY, 2018, 63 (05)
[40]   A trichrome beam model for biological dose calculation in scanned carbon-ion radiotherapy treatment planning [J].
Inaniwa, T. ;
Kanematsu, N. .
PHYSICS IN MEDICINE AND BIOLOGY, 2015, 60 (01) :437-451