A review of the use and potential of the GATE Monte Carlo simulation code for radiation therapy and dosimetry applications
Обзор применения и потенциала кода моделирования методом Монте-Карло GATE для задач лучевой терапии и дозиметрии
2014-05-12
SCID: 54.1/ydnswwuf
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GATE Monte CarloGEANT4 toolkitdosimetryin vivo dose monitoringradiation therapy
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Abstract (AI)
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.
Key Findings
1
GATE can model treatment delivery and imaging acquisition within a unified framework, providing a practical advantage for combined therapy and imaging simulations.
2
GATE is an open-source Monte Carlo simulation platform based on GEANT4 applicable to a broad range of radiation therapy and dosimetry problems.
3
GEANT4-only investigations are included to demonstrate additional potential applications and capabilities relevant to GATE.
4
Reported computational times indicate that several GATE-based applications are practically feasible with current computing facilities.
5
The review documents GATE applications in external beam radiotherapy, brachytherapy, intraoperative radiotherapy, hadrontherapy, molecular radiotherapy, and in vivo dose monitoring.
Research Object
GATE Monte Carlo simulation platform for radiation therapy and dosimetry applications
Research Subject
The applicability, potential, applications, and computational feasibility of GATE for simulating radiotherapy treatments, imaging acquisitions, and dose monitoring
Publication Details
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2014-05-12
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