Technological quality requirements for stereotactic radiotherapyExpert review group consensus from the DGMP Working Group for Physics and Technology in Stereotactic Radiotherapy

被引:0
作者
Daniela Schmitt
Oliver Blanck
Tobias Gauer
Michael K. Fix
Thomas B. Brunner
Jens Fleckenstein
Britta Loutfi-Krauss
Peter Manser
Rene Werner
Maria-Lisa Wilhelm
Wolfgang W. Baus
Christos Moustakis
机构
[1] Universitätsklinikum Heidelberg,Klinik für Radioonkologie und Strahlentherapie, National Center for Radiation Research in Oncology (NCRO), Heidelberger Institut für Radioonkologie (HIRO)
[2] Universitätsklinikum Schleswig-Holstein,Klinik für Strahlentherapie
[3] Universitätsklinikum Hamburg-Eppendorf,Klinik für Strahlentherapie und Radioonkologie
[4] Universität Bern,Abteilung für Medizinische Strahlenphysik und Universitätsklinik für Radio
[5] Universitätsklinikum Magdeburg,Onkologie, Inselspital—Universitätsspital Bern
[6] Universität Heidelberg,Universitätsklinik für Strahlentherapie
[7] Universitätsklinikum Frankfurt,Klinik für Strahlentherapie und Radioonkologie, Universitätsmedizin Mannheim
[8] Universitätsklinikum Hamburg-Eppendorf,Klinik für Strahlentherapie und Onkologie
[9] Universitätsmedizin Rostock,Institut für Computational Neuroscience
[10] Universitätsklinikum Köln,Klinik für Strahlentherapie
[11] Universitätsklinikum Münster,Klinik für Radioonkologie, CyberKnife
来源
Strahlentherapie und Onkologie | 2020年 / 196卷
关键词
Radiosurgery; Recommendations; Technique; SRS; FSRT; SBRT;
D O I
暂无
中图分类号
学科分类号
摘要
This review details and discusses the technological quality requirements to ensure the desired quality for stereotactic radiotherapy using photon external beam radiotherapy as defined by the DEGRO Working Group Radiosurgery and Stereotactic Radiotherapy and the DGMP Working Group for Physics and Technology in Stereotactic Radiotherapy. The covered aspects of this review are 1) imaging for target volume definition, 2) patient positioning and target volume localization, 3) motion management, 4) collimation of the irradiation and beam directions, 5) dose calculation, 6) treatment unit accuracy, and 7) dedicated quality assurance measures. For each part, an expert review for current state-of-the-art techniques and their particular technological quality requirement to reach the necessary accuracy for stereotactic radiotherapy divided into intracranial stereotactic radiosurgery in one single fraction (SRS), intracranial fractionated stereotactic radiotherapy (FSRT), and extracranial stereotactic body radiotherapy (SBRT) is presented. All recommendations and suggestions for all mentioned aspects of stereotactic radiotherapy are formulated and related uncertainties and potential sources of error discussed. Additionally, further research and development needs in terms of insufficient data and unsolved problems for stereotactic radiotherapy are identified, which will serve as a basis for the future assignments of the DGMP Working Group for Physics and Technology in Stereotactic Radiotherapy. The review was group peer-reviewed, and consensus was obtained through multiple working group meetings.
引用
收藏
页码:421 / 443
页数:22
相关论文
共 655 条
[51]  
Faivre-Finn C(2008)Cone beam CT image guidance for intracranial stereotactic treatments: comparison with a frame guided set-up Int J Radiat Oncol Biol Phys 18 67-375
[52]  
Moeller D(2016)Targeting accuracy of image-guided radiosurgery for Intracranial lesions: a comparison across multiple linear accelerator platforms Technol Cancer Res Treat 95 109-24
[53]  
Werner R(2017)Evaluation of stability of stereotactic space defined by cone-beam CT for the Leksell Gamma Knife Icon J Appl Clin Med Phys 81 25-101
[54]  
Hofmann C(2010)A clinical comparison of patient setup and intra-fraction motion using frame-based radiosurgery versus a frameless image-guided radiosurgery system for intracranial lesions Radiother Oncol 7 81-5468
[55]  
Mücke E(2006)Impact of target point deviations on control and complication probabilities in stereotactic radiosurgery of AVMs and metastases Radiother Oncol 134 67-101
[56]  
Hunjan S(2012)Accuracy and inter-observer variability of 3D versus 4D cone-beam CT based image-guidance in SBRT for lung tumors Radiat Oncol 60 R77-847
[57]  
Starkschall G(2019)Pancreatic cancer treated with SBRT: Effect of anatomical interfraction variations on dose to organs at risk Radiother Oncol 101 366-2
[58]  
Prado K(2015)Review of ultrasound image guidance in external beam radiotherapy: I. Treatment planning and inter-fraction motion management Phys Med Biol 56 19-866
[59]  
Shirato H(2018)Optical surface scanning for patient positioning in radiation therapy: a prospective analysis of 1902 fractions Technol Cancer Res Treat 43 455-526
[60]  
Seppenwoolde Y(2018)A prospective cohort study of gated Stereotactic liver radiation therapy using continuous internal electromagnetic motion monitoring Int J Radiat Oncol Biol Phys 192 92-149