Treatment planning for scanned ion beams

被引:27
|
作者
Krämer, M
Jäkel, O
Haberer, T
Rietzel, E
Schardt, D
Scholz, M
Wang, JF
Weber, U
Weyrather, W
机构
[1] GSI Biophys, D-64291 Darmstadt, Germany
[2] DKFZ, D-69120 Heidelberg, Germany
[3] IMP, Lanzhou 730000, Peoples R China
关键词
scanned ion beams; treatment planning; radiotherapy;
D O I
10.1016/S0167-8140(04)80021-5
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Since 1997 a radiotherapy unit using fast carbon ions is operational at GSI. An intensity-controlled magnetic raster scanner together with a synchrotron allowing fast energy variation enable a unique method of purely active dose shaping in three dimensions. This contribution describes the necessary steps to establish a treatment planning system for this novel modality. We discuss the requirements for the physical beam model and the radiobiological model. Based on these we chose to implement a home-grown pencil beam model to describe the ion-tissue interaction and the Local Effect Model to calculate the RBE voxel-by-voxel. Given the large number of degrees of freedom biological dose optimization must be achieved by means of inverse treatment planning. All ion-related aspects are collected in our TRiP98 software. Biological dosimetry measuring cell survival in two dimensions turns out to be a good way to verify the model predictions as well as the actual irradiation procedure. We show a patient example and outline the future steps towards a dedicated clinic facility for all light ions.
引用
收藏
页码:S80 / S85
页数:6
相关论文
共 50 条
  • [1] 4D treatment planning for scanned ion beams
    Christoph Bert
    Eike Rietzel
    [J]. Radiation Oncology, 2
  • [2] 4D treatment planning for scanned ion beams
    Bert, Christoph
    Rietzel, Eike
    [J]. RADIATION ONCOLOGY, 2007, 2 (1)
  • [3] Treatment planning of scanned proton beams in RayStation
    Janson, Martin
    Glimelius, Lars
    Fredriksson, Albin
    Traneus, Erik
    Engwall, Erik
    [J]. MEDICAL DOSIMETRY, 2024, 49 (01) : 2 - 12
  • [4] TREATMENT PLANNING WITH ION-BEAMS
    FOSS, M
    [J]. IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1985, 32 (05) : 3318 - 3320
  • [5] TREATMENT PLANNING FOR SCANNED ION BEAM THERAPY IN CLINICAL ROUTINE
    Ellerbrock, M.
    Ackermann, B.
    Brons, S.
    Heeg, P.
    Henkner, K.
    Ecker, S.
    Nairz, O.
    Winter, M.
    Mairani, A.
    Parodi, K.
    Jaekel, O.
    [J]. RADIOTHERAPY AND ONCOLOGY, 2010, 96 : S542 - S543
  • [6] Treatment of moving targets with scanned ion beams: A comparison of different strategies
    Bert, C.
    Rietzel, E.
    Haberer, T.
    Chen, G.
    Kraft, G.
    [J]. MEDICAL PHYSICS, 2006, 33 (06) : 2049 - 2049
  • [7] Experimental characterization of lateral profiles of scanned proton and carbon ion pencil beams for improved beam models in ion therapy treatment planning
    Schwaab, J.
    Brons, S.
    Fieres, J.
    Parodi, K.
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2011, 56 (24): : 7813 - 7827
  • [8] Treatment Planning Studies in Patient Data With Scanned Carbon Ion Beams for Catheter-Free Ablation of Atrial Fibrillation
    Constantinescu, Anna
    Lehmann, H. Immo
    Packer, Douglas L.
    Bert, Christoph
    Durante, Marco
    Graeff, Christian
    [J]. JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 2016, 27 (03) : 335 - 344
  • [9] Quality assurance for a treatment planning system in scanned ion beam therapy
    Jäkel, O
    Hartmann, GH
    Karger, CP
    Heeg, P
    Rassow, J
    [J]. MEDICAL PHYSICS, 2000, 27 (07) : 1588 - 1600
  • [10] Performance of a Beam Tracking System for Treatment of Moving Targets with Scanned Ion Beams
    Bert, C.
    Saito, N.
    Schmidt, A.
    Chaudhri, N.
    Schardt, D.
    Rietzel, E.
    [J]. MEDICAL PHYSICS, 2008, 35 (06)