Suppr超能文献

AAPM 工作组报告 238:具有容积成像功能的 3D C 臂。

AAPM Task Group Report 238: 3D C-arms with volumetric imaging capability.

机构信息

Rush University Medical Center, Chicago, Illinois, USA.

Johns Hopkins University, Baltimore, Maryland, USA.

出版信息

Med Phys. 2023 Aug;50(8):e904-e945. doi: 10.1002/mp.16245. Epub 2023 Feb 20.

Abstract

This report reviews the image acquisition and reconstruction characteristics of C-arm Cone Beam Computed Tomography (C-arm CBCT) systems and provides guidance on quality control of C-arm systems with this volumetric imaging capability. The concepts of 3D image reconstruction, geometric calibration, image quality, and dosimetry covered in this report are also pertinent to CBCT for Image-Guided Radiation Therapy (IGRT). However, IGRT systems introduce a number of additional considerations, such as geometric alignment of the imaging at treatment isocenter, which are beyond the scope of the charge to the task group and the report. Section 1 provides an introduction to C-arm CBCT systems and reviews a variety of clinical applications. Section 2 briefly presents nomenclature specific or unique to these systems. A short review of C-arm fluoroscopy quality control (QC) in relation to 3D C-arm imaging is given in Section 3. Section 4 discusses system calibration, including geometric calibration and uniformity calibration. A review of the unique approaches and challenges to 3D reconstruction of data sets acquired by C-arm CBCT systems is give in Section 5. Sections 6 and 7 go in greater depth to address the performance assessment of C-arm CBCT units. First, Section 6 describes testing approaches and phantoms that may be used to evaluate image quality (spatial resolution and image noise and artifacts) and identifies several factors that affect image quality. Section 7 describes both free-in-air and in-phantom approaches to evaluating radiation dose indices. The methodologies described for assessing image quality and radiation dose may be used for annual constancy assessment and comparisons among different systems to help medical physicists determine when a system is not operating as expected. Baseline measurements taken either at installation or after a full preventative maintenance service call can also provide valuable data to help determine whether the performance of the system is acceptable. Collecting image quality and radiation dose data on existing phantoms used for CT image quality and radiation dose assessment, or on newly developed phantoms, will inform the development of performance criteria and standards. Phantom images are also useful for identifying and evaluating artifacts. In particular, comparing baseline data with those from current phantom images can reveal the need for system calibration before image artifacts are detected in clinical practice. Examples of artifacts are provided in Sections 4, 5, and 6.

摘要

本报告回顾了 C 臂锥形束 CT(C-arm CBCT)系统的图像采集和重建特性,并就具有这种容积成像功能的 C 臂系统的质量控制提供了指导。本报告涵盖的三维图像重建、几何校准、图像质量和剂量学概念也与图像引导放射治疗(IGRT)的 CBCT 相关。然而,IGRT 系统引入了许多其他考虑因素,例如成像在治疗等中心的几何对准,这些因素超出了任务组和报告的范围。第 1 节介绍了 C 臂 CBCT 系统,并回顾了各种临床应用。第 2 节简要介绍了这些系统特有的或独特的命名法。第 3 节简要介绍了与 3D C 臂成像相关的 C 臂透视质量控制(QC)。第 4 节讨论了系统校准,包括几何校准和均匀性校准。第 5 节对 C 臂 CBCT 系统采集的数据进行三维重建的独特方法和挑战进行了回顾。第 6 节和第 7 节更深入地探讨了 C 臂 CBCT 单元的性能评估。第 6 节首先描述了可能用于评估图像质量(空间分辨率和图像噪声和伪影)的测试方法和体模,并确定了影响图像质量的几个因素。第 7 节描述了评估空气自由和体模内辐射剂量指数的方法。用于评估图像质量和辐射剂量的方法可用于年度恒定性评估和不同系统之间的比较,以帮助医学物理学家确定系统何时未按预期运行。在安装或全面预防性维护服务呼叫后进行的基线测量也可以提供有价值的数据,以帮助确定系统的性能是否可接受。在用于 CT 图像质量和辐射剂量评估的现有体模或新开发的体模上收集图像质量和辐射剂量数据,将为性能标准的制定提供信息。体模图像还可用于识别和评估伪影。特别是,将基线数据与当前体模图像数据进行比较,可以在临床实践中发现图像伪影之前,揭示系统校准的需求。第 4、5 和 6 节提供了伪影的示例。

相似文献

本文引用的文献

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验