Sarrut David, Bardiès Manuel, Boussion Nicolas, Freud Nicolas, Jan Sébastien, Létang Jean-Michel, Loudos George, Maigne Lydia, Marcatili Sara, Mauxion Thibault, Papadimitroulas Panagiotis, Perrot Yann, Pietrzyk Uwe, Robert Charlotte, Schaart Dennis R, Visvikis Dimitris, Buvat Irène
Université de Lyon, CREATIS; CNRS UMR5220; Inserm U1044; INSA-Lyon; Université Lyon 1; Centre Léon Bérard, France.
Inserm, UMR1037 CRCT, F-31000 Toulouse, France and Université Toulouse III-Paul Sabatier, UMR1037 CRCT, F-31000 Toulouse, France.
Med Phys. 2014 Jun;41(6):064301. doi: 10.1118/1.4871617.
In this paper, the authors' review the applicability of the open-source GATE Monte Carlo simulation platform based on the GEANT4 toolkit for radiation therapy and dosimetry applications. The many applications of GATE for state-of-the-art radiotherapy simulations are described including external beam radiotherapy, brachytherapy, intraoperative radiotherapy, hadrontherapy, molecular radiotherapy, and in vivo dose monitoring. Investigations that have been performed using GEANT4 only are also mentioned to illustrate the potential of GATE. The very practical feature of GATE making it easy to model both a treatment and an imaging acquisition within the same framework is emphasized. The computational times associated with several applications are provided to illustrate the practical feasibility of the simulations using current computing facilities.
在本文中,作者回顾了基于GEANT4工具包的开源GATE蒙特卡罗模拟平台在放射治疗和剂量测定应用中的适用性。描述了GATE在最先进的放射治疗模拟中的众多应用,包括外照射放疗、近距离放疗、术中放疗、质子治疗、分子放疗和体内剂量监测。还提到了仅使用GEANT4进行的研究,以说明GATE的潜力。强调了GATE非常实用的特点,即便于在同一框架内对治疗和成像采集进行建模。提供了与几种应用相关的计算时间,以说明使用当前计算设备进行模拟的实际可行性。