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System for verifiable CT radiation dose optimization based on image quality. Part II. Process control system

机译:基于图像质量的可验证CT辐射剂量优化系统。第二部分过程控制系统

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Purpose: To evaluate the effect of an automated computed tomography (CT) radiation dose optimization and process control system on the consistency of estimated image noise and size-specific dose estimates (SSDEs) of radiation in CT examinations of the chest, abdomen, and pelvis. Materials and Methods: This quality improvement project was determined not to constitute human subject research. An automated system was developed to analyze each examination immediately after completion, and to report individual axial-imagelevel and study-level summary data for patient size, image noise, and SSDE. The system acquired data for 4 months beginning October 1, 2011. Protocol changes were made by using parameters recommended by the prediction application, and 3 months of additional data were acquired. Preimplementation and postimplementation mean image noise and SSDE were compared by using unpaired t tests and F tests. Common-cause variation was differentiated from special-cause variation by using a statistical process control individual chart. Results: A total of 817 CT examinations, 490 acquired before and 327 acquired after the initial protocol changes, were included in the study. Mean patient age and water-equivalent diameter were 12.0 years and 23.0 cm, respectively. The difference between actual and target noise increased from 21.4 to 0.3 HU (P < .01) and the standard deviation decreased from 3.9 to 1.6 HU (P < .01). Mean SSDE decreased from 11.9 to 7.5 mGy, a 37% reduction (P < .01). The process control chart identified several special causes of variation. Conclusion: Implementation of an automated CT radiation dose optimization system led to verifiable simultaneous decrease in image noise variation and SSDE. The automated nature of the system provides the opportunity for consistent CT radiation dose optimization on a broad scale.
机译:目的:在胸部,腹部和骨盆CT检查中,评估自动计算机断层扫描(CT)辐射剂量优化和过程控制系统对估计图像噪声和辐射的特定尺寸剂量估计(SSDE)的一致性的影响。材料和方法:确定此质量改进项目不构成人类主题研究。开发了一个自动系统,可以在完成后立即分析每项检查,并报告有关患者体型,图像噪声和SSDE的各个轴向图像水平和研究水平的摘要数据。系统从2011年10月1日开始获取了4个月的数据。使用预测应用程序推荐的参数对协议进行了更改,并获取了3个月的其他数据。使用未配对的t检验和F检验比较了实施前和实施后的平均图像噪声和SSDE。通过使用统计过程控制单个图表,可将常见原因差异与特殊原因差异区分开。结果:总共817项CT检查,包括在初始方案变更前进行的490项检查和在初始方案变更后的327项检查。平均患者年龄和水等效直径分别为12.0岁和23.0 cm。实际噪声与目标噪声之间的差异从21.4 HU增大到0.3 HU(P <.01),标准偏差从3.9 HU减小到1.6 HU(P <.01)。平均SSDE从11.9降至7.5 mG​​y,降低了37%(P <.01)。过程控制图确定了导致变化的几种特殊原因。结论:自动CT辐射剂量优化系统的实施导致可验证的同时减少图像噪声变化和SSDE。该系统的自动化性质为大规模的连续CT辐射剂量优化提供了机会。

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