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One Year’s Results from a Server-Based System for Performing Reject Analysis and Exposure Analysis in Computed Radiography

机译:基于服务器的系统在计算机射线照相中执行拒绝分析和曝光分析的一年结果

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摘要

Rejected images represent both unnecessary radiation exposure to patients and inefficiency in the imaging operation. Rejected images are inherent to projection radiography, where patient positioning and alignment are integral components of image quality. Patient motion and artifacts unique to digital image receptor technology can result in rejected images also. We present a centralized, server-based solution for the collection, archival, and distribution of rejected image and exposure indicator data that automates the data collection process. Reject analysis program (RAP) and exposure indicator data were collected and analyzed during a 1-year period. RAP data were sorted both by reason for repetition and body part examined. Data were also stratified by clinical area for further investigation. The monthly composite reject rate for our institution fluctuated between 8% and 10%. Positioning errors were the main cause of repeated images (77.3%). Stratification of data by clinical area revealed that areas where computed radiography (CR) is seldom used suffer from higher reject rates than areas where it is used frequently. >S values were log-normally distributed for examinations performed under either manual or automatic exposure control. The distributions were positively skewed and leptokurtic. >S value decreases due to radiologic technology student rotations, and CR plate reader calibrations were observed. Our data demonstrate that reject analysis is still necessary and useful in the era of digital imaging. It is vital though that analysis be combined with exposure indicator analysis, as digital radiography is not self-policing in terms of exposure. When combined, the two programs are a powerful tool for quality assurance.
机译:被拒绝的图像既表示对患者不必要的辐射暴露,又表示成像操作效率低下。被拒绝的图像是投影射线照相所固有的,患者的定位和对准是图像质量不可或缺的组成部分。数字图像接收器技术独有的患者运动和伪影也会导致图像被拒绝。我们提出了一种基于服务器的集中式解决方案,用于收集,存档和分发被拒绝的图像和曝光指示数据,从而使数据收集过程自动化。在1年的时间内收集并分析了拒绝分析程序(RAP)和暴露指标数据。 RAP数据按重复原因和检查身体部位进行分类。数据也按临床领域进行了分层,以供进一步研究。我们机构的每月综合拒绝率在8%和10%之间波动。定位错误是重复图像的主要原因(77.3%)。按临床区域的数据分层显示,与经常使用计算机X线摄影(CR)的地区相比,很少使用计算机X线摄影(CR)的地区遭受的拒收率更高。 > S 值以对数正态分布,用于在手动或自动曝光控制下进行的检查。分布呈正偏态,并具有瘦态。 > S 值由于放射学技术的学生轮换而降低,并观察到CR标板读取器的校准。我们的数据表明,在数字成像时代,废品分析仍然是必要且有用的。尽管将分析与暴露指标分析结合起来是至关重要的,因为就放射而言,数字放射线照相术不是自我监管的。结合使用时,这两个程序是保证质量的强大工具。

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