Seeram Euclid
Faculty of Health Sciences, University of Sydney, Australia; School of Biomedical Sciences, Monash University, Australia; Faculty of Science, Charles Sturt University, Australia.
J Med Imaging Radiat Sci. 2014 Jun;45(2):144-158. doi: 10.1016/j.jmir.2014.02.004. Epub 2014 Jun 19.
This article describes the essential elements of the new standardized exposure indicator (EI) established by the International Electrotechnical Commission for digital radiography systems. First, a review of the limitations of the narrow exposure latitude of film screen radiography is presented followed by the brief description of two digital radiography systems, a computed radiography system and a flat-panel digital radiography system. These systems feature wide exposure latitude, variable speed class, and image processing to produce images that appear with the same density regardless of the exposure used and a characteristic EI displayed on images to provide the technologist with some indication of the exposure level to the digital detector. The third point described focussed on the major elements of the standardized EI of the IEC and described them with respect to standardization efforts, deviation index, and the target EI (EI), responsibilities of both the manufacturers and users. This new standardized EI is now proportional to the detector exposure and requires the user to establish EI values for all examinations in order to ensure optimization of the dose to the patient without compromising the image quality. The values (EI and EI) can now be used to calculate the DI, which provides immediate feedback to the technologist as to whether the correct exposure was used for the examination. Finally, an insight into optimization research will be presented as a means of illustration of a dose-image quality optimization strategy that can be used to determine EI values objectively.
本文介绍了国际电工委员会为数字射线摄影系统制定的新标准化曝光指标(EI)的基本要素。首先,回顾了屏片射线摄影曝光宽容度窄的局限性,随后简要描述了两种数字射线摄影系统,即计算机射线摄影系统和平板数字射线摄影系统。这些系统具有宽曝光宽容度、可变速度等级以及图像处理功能,能够生成无论使用何种曝光都具有相同密度的图像,并在图像上显示特征性EI,为技术人员提供有关数字探测器曝光水平的某种指示。所描述的第三点重点关注了国际电工委员会标准化EI的主要要素,并从标准化工作、偏差指数和目标EI(EI)、制造商和用户的责任等方面进行了阐述。这种新的标准化EI现在与探测器曝光成正比,要求用户为所有检查确定EI值,以确保在不影响图像质量的情况下优化患者剂量。现在可以使用这些值(EI和EI)来计算DI,DI会立即向技术人员反馈检查时是否使用了正确的曝光。最后,将介绍优化研究的见解,作为一种剂量-图像质量优化策略的示例说明,该策略可用于客观地确定EI值。