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An experimental study on the noise properties of X-ray CT sinogram data in Radon space

机译:Radon空间中X射线CT正弦图数据噪声特性的实验研究

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摘要

Computed tomography (CT) has been well established as a diagnostic tool through hardware optimization and sophisticated data calibration. For screening purposes, the associated X-ray exposure risk must be minimized. An effective way to minimize the risk is to deliver fewer X-rays to the subject or lower the mAs parameter in data acquisition. This will increase the data noise. This work aims to study the noise property of the calibrated or preprocessed sinogram data in Radon space as the mAs level decreases. An anthropomorphic torso phantom was scanned repeatedly by a commercial CT imager at five different mAs levels from 100 down to 17 (the lowest value provided by the scanner). The preprocessed sinogram datasets were extracted from the CT scanner to a laboratory computer for noise analysis. The repeated measurements at each mAs level were used to test the normality of the repeatedly measured samples for each data channel using the Shapiro-Wilk statistical test merit. We further studied the probability distribution of the repeated measures. Most importantly, we validated a theoretical relationship between the sample mean and variance at each channel. It is our intention that the statistical test and particularly the relationship between the first and second statistical moments will improve low-dose CT image reconstruction for screening applications.
机译:通过硬件优化和复杂的数据校准,计算机断层扫描(CT)已经作为诊断工具得到了很好的确立。为了进行筛查,必须将相关的X射线暴露风险降至最低。最小化风险的有效方法是向受试者提供更少的X射线或降低数据采集中的mAs参数。这会增加数据噪声。这项工作的目的是研究随着mAs电平的降低,在Radon空间中校准或预处理的正弦图数据的噪声特性。用商用CT成像仪以100到17(扫描仪提供的最低值)这五个不同的mAs级别反复扫描拟人的躯干体模。将预处理的正弦图数据集从CT扫描仪提取到实验室计算机以进行噪声分析。使用Shapiro-Wilk统计测试优点,使用每个mAs级别的重复测量来测试每个数据通道重复测量的样本的正常性。我们进一步研究了重复测量的概率分布。最重要的是,我们验证了每个通道样本均值和方差之间的理论关系。我们的意图是,统计测试,尤其是第一和第二统计矩之间的关系将改善用于筛查应用的低剂量CT图像重建。

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