分析数字射线摄影检查的曝光率

I. Rosa, Janine Hastenteufel Dias, Rochelle Lykawka, Maurício Anés, Luany Nobre Furlan, A. Bacelar
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引用次数: 0

摘要

放射摄影是临床实践中一种重要的影像诊断方式,但数字放射摄影在辐射水平方面一直面临挑战。国际电工委员会对数字系统中的暴露指数(EI)和偏差指数(DI)进行了标准化,旨在改进辐射暴露的评估。每项检查都有一个相关的目标暴露指数(EIT),代表辐射剂量和图像质量之间的平衡。这项研究使用一个包含 71,760 张射线照片的数据库,分析了一家大学医院数字射线照片的 EI 和 DI。分析考虑了美国医学物理学家协会(AAPM)建议的行动限值。在放射室进行的照射组的 DI 值为 1.2,而在移动设备上进行的照射组的 DI 值为 2.4。相比之下,第一组的标准偏差值介于 1.5 和 3.9 之间,第二组介于 1.8 和 2.6 之间。这些结果表明,使用自动曝光控制(CAE)进行的曝光与 EIT 的差异较小,但在使用移动设备、手动选择曝光参数的检查中,放射技术的标准化程度更高,因为这些检查的 DI 分散范围较小。在谷歌Looker Studio中创建的自动化工具促进了交互式数据分析,按解剖区域和视图显示信息,具有持续监控放射操作的潜力。在某些病例中,获得的平均 DI 值与理想值相差很大,这就需要采取优化措施、调查适当的 EIT 定义和校准 CAE。这项研究提供了当地放射学实践的详细概览,突出了优化和标准化行动的优先事项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Análise dos índices de exposição de exames de radiografia digital
Radiography is a crucial diagnostic imaging modality in clinical practice, with persistent challenges in digital radiography regarding the level of exposure. The International Electrotechnical Commission standardized the Exposure Index (EI) and Deviation Index (DI) in digital systems, aiming to improve the assessment of radiation exposure. Each exam has an associated Target Exposure Index (EIT), representing the balance between radiation dose and image quality. This study analyzed the EI and DI of digital radiographs at a university hospital, using a database of 71,760 radiographs. The analysis considered the action limits as suggested by the American Association of Physicists in Medicine (AAPM). The group of exposures carried out in radiography rooms presented a DI of 1.2, while that of exposures carried out on mobile equipment, 2.4. In contrast, the first group presented standard deviation values between 1.5 and 3.9, while the second, between 1.8 and 2.6. These results suggest that exposures performed using Automatic Exposure Control (CAE) differ less from EIT, however, radiographic techniques were more standardized among exams with mobile equipment, performed with manual selection of exposure parameters, as these exams presented a smaller DI dispersion range. The creation of an automated tool in Google Looker Studio facilitated interactive data analysis, presenting information by anatomical region and view, with the potential to continuously monitor radiological practices. For certain incidences, the average DI values obtained differed substantially from the ideal value, which requires optimization actions, investigation into the definition of adequate EIT and calibration of the CAE. The study provided a detailed overview of local radiographic practices, highlighting priorities for optimization and standardization actions.
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