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TOPAS-imaging:TOPAS 模拟工具包在医学成像系统中的扩展。

TOPAS-imaging: extensions to the TOPAS simulation toolkit for medical imaging systems.

机构信息

Department of Radiation Oncology, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, United States of America.

Department of Radiation Convergence Engineering, Yonsei University, Wonju, Gangwon-do 26493, Republic of Korea.

出版信息

Phys Med Biol. 2023 Apr 3;68(8). doi: 10.1088/1361-6560/acc565.

Abstract

. The TOol for PArticle Simulation (TOPAS) is a Geant4-based Monte Carlo software application that has been used for both research and clinical studies in medical physics. So far, most users of TOPAS have focused on radiotherapy-related studies, such as modeling radiation therapy delivery systems or patient dose calculation. Here, we present the first set of TOPAS extensions to make it easier for TOPAS users to model medical imaging systems.. We used the extension system of TOPAS to implement pre-built, user-configurable geometry components such as detectors (e.g. flat-panel and multi-planar detectors) for various imaging modalities and pre-built, user-configurable scorers for medical imaging systems (e.g. digitizer chain).. We developed a flexible set of extensions that can be adapted to solve research questions for a variety of imaging modalities. We then utilized these extensions to model specific examples of cone-beam CT (CBCT), positron emission tomography (PET), and prompt gamma (PG) systems. The first of these new geometry components, the FlatImager, was used to model example CBCT and PG systems. Detected signals were accumulated in each detector pixel to obtain the intensity of x-rays penetrating objects or prompt gammas from proton-nuclear interaction. The second of these new geometry components, the RingImager, was used to model an example PET system. Positron-electron annihilation signals were recorded in crystals of the RingImager and coincidences were detected. The simulated data were processed using corresponding post-processing algorithms for each modality and obtained results in good agreement with the expected true signals or experimental measurement.. The newly developed extension is a first step to making it easier for TOPAS users to build and simulate medical imaging systems. Together with existing TOPAS tools, this extension can help integrate medical imaging systems with radiotherapy simulations for image-guided radiotherapy.

摘要

. 工具用于文章模拟 (TOPAS) 是一个基于 Geant4 的蒙特卡罗软件应用程序,已经用于医学物理的研究和临床研究。到目前为止,TOPAS 的大多数用户都专注于与放射治疗相关的研究,例如建模放射治疗输送系统或患者剂量计算。在这里,我们提出了第一组 TOPAS 扩展,以使 TOPAS 用户更容易建模医学成像系统。. 我们使用 TOPAS 的扩展系统实现了预构建的、用户可配置的几何组件,例如用于各种成像方式的探测器(例如平板探测器和多平面探测器)和用于医学成像系统的预构建的、用户可配置的评分器(例如数字化仪链)。. 我们开发了一套灵活的扩展,可以适应解决各种成像方式的研究问题。然后,我们利用这些扩展来模拟特定的锥形束 CT(CBCT)、正电子发射断层扫描(PET)和瞬发伽马(PG)系统的示例。这些新的几何组件中的第一个,FlatImager,用于模拟示例 CBCT 和 PG 系统。在每个探测器像素中积累检测到的信号,以获得穿透物体的 X 射线或质子-核相互作用产生的瞬发伽马的强度。这些新的几何组件中的第二个,RingImager,用于模拟示例 PET 系统。在 RingImager 的晶体中记录正电子-电子湮没信号,并检测到符合事件。使用每种模态的相应后处理算法处理模拟数据,并获得与预期真实信号或实验测量结果非常吻合的结果。. 新开发的扩展是使 TOPAS 用户更容易构建和模拟医学成像系统的第一步。与现有的 TOPAS 工具一起,该扩展可以帮助将医学成像系统与放射治疗模拟集成在一起,用于图像引导放射治疗。

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