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Relating Noise to Image Quality Indicators in CT Examinations With Tube Current Modulation.

机译:使用电子管电流调制将噪声与CT检验中的图像质量指标相关联。

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摘要

Modern CT systems use surrogates of noise-noise index (NI) and quality reference effective tube current-time product (Q)-to infer the quality of images acquired using tube current modulation. This study aimed to determine the relationship between actual noise and these surrogates for two CT scanners from two different manufacturers.Two phantoms (adult and 1-year-old child) were imaged on two CT scanners (64 and 128 MDCT) using a clinical range of NI (6-22) and Q (30-300 mA). Each scan was performed twice, and noise was measured in the mediastinum, lung, and abdomen using an image subtraction technique. The effect on noise from changing other imaging parameters, such as beam collimation, pitch, peak kilovoltage, slice thickness, FOV, reconstruction kernel or algorithm, and patient age category (adult or pediatric), was investigated.On the 64-MDCT scanner, noise increased linearly along with NI, with the slope affected by changing the anatomy of interest, peak kilovoltage, reconstruction algorithm, and convolution kernel. The noise-NI relationship was independent of phantom size, slice thickness, pitch, FOV, and beam width. On the 128-MDCT scanner, noise decreased nonlinearly along with increasing Q, slice thickness, and peak tube voltage. The noise-Q relationship also depended on anatomy of interest, phantom size, age selection, and reconstruction algorithm but was independent of pitch, FOV, and detector configuration.We established how noise changes with changing image quality indicators across a clinically relevant range of imaging parameters. This work can aid in optimizing protocols by targeting specific noise levels for different types of CT examinations.
机译:现代CT系统使用噪声指数(NI)和质量参考有效管电流-时间乘积(Q)的替代物来推断使用管电流调制获取的图像的质量。这项研究旨在确定来自两个不同制造商的两台CT扫描仪的实际噪声与这些替代物之间的关系。使用临床范围在两台CT扫描仪(64和128 MDCT)上成像了两个人体模型(成人和1岁儿童)。 NI(6-22)和Q(30-300 mA)。每次扫描进行两次,并使用图像减影技术测量纵隔,肺和腹部的噪音。在64-MDCT扫描仪上,研究了改变其他成像参数(例如束准直,节距,峰值千伏电压,切片厚度,FOV,重建内核或算法以及患者年龄类别(成人或儿科))对噪声的影响。噪声随NI线性增加,其斜率受感兴趣的解剖结构,峰值千伏电压,重构算法和卷积核的影响。噪声-NI关系与幻像大小,切片厚度,间距,FOV和光束宽度无关。在128-MDCT扫描仪上,噪声随着Q,切片厚度和峰值管电压的增加而非线性降低。噪声-Q关系还取决于感兴趣的解剖结构,体模大小,年龄选择和重建算法,但与音高,FOV和检测器配置无关,我们确定了在临床相关成像范围内噪声如何随图像质量指标的变化而变化。参数。这项工作可以通过针对不同类型的CT检查确定特定的噪声水平来帮助优化方案。

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