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Noise texture and signal detectability in propagation-based x-ray phase-contrast tomography.

机译:基于传播的X射线相位对比层析成像中的噪声纹理和信号可检测性。

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PURPOSE: X-ray phase-contrast tomography (PCT) is a rapidly emerging imaging modality for reconstructing estimates of an object's three-dimensional x-ray refractive index distribution. Unlike conventional x-ray computed tomography methods, the statistical properties of the reconstructed images in PCT remain unexplored. The purpose of this work is to quantitatively investigate noise propagation in PCT image reconstruction. METHODS: The authors derived explicit expressions for the autocovariance of the reconstructed absorption and refractive index images to characterize noise texture and understand how the noise properties are influenced by the imaging geometry. Concepts from statistical detection theory were employed to understand how the imaging geometry-dependent statistical properties affect the signal detection performance in a signal-known-exactly/background-known-exactly task. RESULTS: The analytical formulas for the phase and absorption autocovariance functions were implemented numerically and compared to the corresponding empirical values, and excellent agreement was found. They observed that the reconstructed refractive images are highly spatially correlated, while the absorption images are not. The numerical results confirm that the strength of the covariance is scaled by the detector spacing. Signal detection studies were conducted, employing a numerical observer. The detection performance was found to monotonically increase as the detector-plane spacing was increased. CONCLUSIONS: The authors have conducted the first quantitative investigation of noise propagation in PCT image reconstruction. The reconstructed refractive images were found to be highly spatially correlated, while absorption images were not. This is due to the presence of a Fourier space singularity in the reconstruction formula for the refraction images. The statistical analysis may facilitate the use of task-based image quality measures to further develop and optimize this emerging modality for specific applications.
机译:用途:X射线相衬断层扫描(PCT)是一种快速出现的成像方式,用于重建物体三维X射线折射率分布的估计值。与传统的X射线计算机断层扫描方法不同,PCT中重建图像的统计属性仍未开发。这项工作的目的是定量研究PCT图像重建中的噪声传播。方法:作者为重建的吸收和折射率图像的自协方差导出了显式表达式,以表征噪声纹理并了解噪声特性如何受到成像几何形状的影响。采用统计检测理论的概念来理解成像几何相关的统计特性如何影响已知信号/背景已知任务中的信号检测性能。结果:对相位和吸收自协方差函数的解析公式进行了数值计算,并与相应的经验值进行了比较,并发现了很好的一致性。他们观察到重建的折射图像在空间上高度相关,而吸收图像则没有。数值结果证实了协方差的强度由检测器间距定标。使用数字观察器进行了信号检测研究。发现检测器性能随着检测器平面间距的增加而单调增加。结论:作者对PCT图像重建中的噪声传播进行了首次定量研究。发现重建的折射图像在空间上高度相关,而吸收图像则没有。这是由于在折射图像的重建公式中存在傅立叶空间奇点。统计分析可以促进基于任务的图像质量度量的使用,以进一步开发和优化针对特定应用的这种新兴形式。

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