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Analytical evaluation of the signal and noise propagation in x-ray differential phase-contrast computed tomography.

机译:对X射线微分相位对比计算机断层扫描中信号和噪声传播的分析评估。

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摘要

We analyze the signal and noise propagation of differential phase-contrast computed tomography (PCT) compared with conventional attenuation-based computed tomography (CT) from a theoretical point of view. This work focuses on grating-based differential phase-contrast imaging. A mathematical framework is derived that is able to analytically predict the relative performance of both imaging techniques in the sense of the relative contrast-to-noise ratio for the contrast of any two materials. Two fundamentally different properties of PCT compared with CT are identified. First, the noise power spectra show qualitatively different characteristics implying a resolution-dependent performance ratio. The break-even point is derived analytically as a function of system parameters such as geometry and visibility. A superior performance of PCT compared with CT can only be achieved at a sufficiently high spatial resolution. Second, due to periodicity of phase information which is non-ambiguous only in a bounded interval statistical phase wrapping can occur. This effect causes a collapse of information propagation for low signals which limits the applicability of phase-contrast imaging at low dose.
机译:从理论的角度,我们分析了与传统的基于衰减的计算机断层扫描(CT)相比,差分相衬计算机断层扫描(PCT)的信号和噪声传播。这项工作的重点是基于光栅的差分相衬成像。得出了一个数学框架,该框架能够从任意两种材料的对比度的相对对比度噪声比的意义上,分析地预测两种成像技术的相对性能。确定了与CT相比PCT的两个根本不同的属性。首先,噪声功率谱显示出质的不同特性,这意味着取决于分辨率的性能比。盈亏平衡点是根据系统参数(例如几何形状和可见性)的分析得出的。仅在足够高的空间分辨率下才能实现PCT与CT相比的优越性能。其次,由于相位信息的周期性,仅在有界间隔内才是明确的,因此可能发生统计相位包裹。这种影响导致低信号信息传播的崩溃,从而限制了低剂量下相衬成像的适用性。

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