全球 CT 辐射剂量优化愿景

IF 4 3区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Journal of the American College of Radiology Pub Date : 2024-08-01 DOI:10.1016/j.jacr.2024.01.014
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引用次数: 0

摘要

在 CMS 最近批准了新的 CT 剂量测量方法后,CT 辐射剂量管理这一话题再次受到关注。在全球范围内,CT 辐射剂量仍然普遍存在差异,这表明当前缺乏剂量优化技术。本文概述了促进全球 CT 辐射剂量优化的建议策略。CT 辐射剂量优化可定义为常规使用 CT 扫描参数,这些参数可持续生成略高于特定临床适应症可接受图像质量最低阈值的图像,并使用扫描仪上现有的最具剂量效率的技术考虑相关患者特征。为实现这一目标,必须为每个方案确定基于图像质量的目标剂量;对于非头部 CT 应用,这些目标剂量值必须表示为患者体型的函数。随着检查结果变化的减少,目标剂量也会随之减少,以更接近最低图像质量阈值。保持 CT 辐射剂量最优化需要一个过程控制程序,包括测量、评估、反馈和控制。这最好由放射科医生、医学物理学家和技术专家组成的本地团队来完成,并提供受保护的时间和所需的工具,包括分析和协议管理应用程序。对促进 CT 辐射剂量管理至关重要的其他利益相关者包括研究人员、资助机构、行业、监管机构、认证机构、付款人和美国放射学会。类似的协调方法已经改变了其他行业的质量,可以成为实现 CT 辐射剂量优化这一普遍目标的机制。
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A Vision for Global CT Radiation Dose Optimization

The topic of CT radiation dose management is receiving renewed attention since the recent approval by CMS for new CT dose measures. Widespread variation in CT dose persists in practices across the world, suggesting that current dose optimization techniques are lacking. The author outlines a proposed strategy for facilitating global CT radiation dose optimization. CT radiation dose optimization can be defined as the routine use of CT scan parameters that consistently produce images just above the minimum threshold of acceptable image quality for a given clinical indication, accounting for relevant patient characteristics, using the most dose-efficient techniques available on the scanner. To accomplish this, an image quality–based target dose must be established for every protocol; for nonhead CT applications, these target dose values must be expressed as a function of patient size. As variation in outcomes is reduced, the dose targets can be decreased to more closely approximate the minimum image quality threshold. Maintaining CT radiation dose optimization requires a process control program, including measurement, evaluation, feedback, and control. This is best accomplished by local teams made up of radiologists, medical physicists, and technologists, supported with protected time and needed tools, including analytics and protocol management applications. Other stakeholders critical to facilitating CT radiation dose management include researchers, funding agencies, industry, regulators, accreditors, payers, and the ACR. Analogous coordinated approaches have transformed quality in other industries and can be the mechanism for achieving the universal goal of CT radiation dose optimization.

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来源期刊
Journal of the American College of Radiology
Journal of the American College of Radiology RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
6.30
自引率
8.90%
发文量
312
审稿时长
34 days
期刊介绍: The official journal of the American College of Radiology, JACR informs its readers of timely, pertinent, and important topics affecting the practice of diagnostic radiologists, interventional radiologists, medical physicists, and radiation oncologists. In so doing, JACR improves their practices and helps optimize their role in the health care system. By providing a forum for informative, well-written articles on health policy, clinical practice, practice management, data science, and education, JACR engages readers in a dialogue that ultimately benefits patient care.
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