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Scattered radiation in flat-detector based cone-beam CT: propagation of signal, contrast, and noise into reconstructed volumes

机译:平面探测器的锥形梁CT中的散射辐射:信号,对比度和噪声的传播到重建的体积中

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This paper presents a novel framework for the systematic assessment of the impact of scattered radiation in .at-detector based cone-beam CT. While it is well known that scattered radiation causes three di.erent types of artifacts in reconstructed images (inhomogeneity artifacts such as cupping and streaks, degradation of contrast, and enhancement of noise), investigations in the literature quantify the impact of scatter mostly only in terms of inhomogeneity artifacts, giving little insight, e.g., into the visibility of low contrast lesions. Therefore, for this study a novel framework has been developed that in addition to normal reconstruction of the CT (HU) number allows for reconstruction of voxelized expectation values of three additional important characteristics of image quality: signal degradation, contrast reduction, and noise variances. The new framework has been applied to projection data obtained with voxelized Monte-Carlo simulations of clinical CT data sets of high spatial resolution. Using these data, the impact of scattered radiation was thoroughly studied for realistic and clinically relevant patient geometries of the head, thorax, and pelvis region. By means of spatially resolved reconstructions of contrast and noise propagation, the image quality of a scenario with using standard antiscatter grids could be evaluated with great detail. Results show the spatially resolved contrast degradation and the spatially resolved expected standard deviation of the noise at any position in the reconstructed object. The new framework represents a general tool for analyzing image quality in reconstructed images.
机译:本文提出了一种新颖的框架,用于系统评估。探测器基锥梁CT的散射辐射的影响。虽然众所周知,分散的辐射导致重建图像中的三种伪像(例如拔罐和条纹,对比度的劣化,噪声的增强),但文献中的调查量大多仅在散射的影响不均匀性伪影的术语,识别不足,例如,进入低对比度病变的可见性。因此,对于本研究,已经开发了一种新颖的框架,除了CT(HU)的正常重建之外还允许重建图像质量的三个额外重要特征的体力化期望值:信号劣化,对比减小和噪声差异。新框架已应用于具有高空间分辨率的临床CT数据集的体曲线蒙特卡罗模拟获得的投影数据。使用这些数据,彻底研究了散射辐射的影响,用于头部,胸部和骨盆区域的现实和临床相关的患者几何形状。通过对比度和噪声传播的空间分辨和噪声传播的重建,可以使用标准防硬栅格的情况的图像质量以很好的细节进行评估。结果表明,空间解决的对比度劣化和在重建对象中的任何位置处的噪声的空间分辨预期标准偏差。新框架代表了用于分析重建图像中图像质量的一般工具。

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