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Varying Collimation for Dark-Field Extraction

机译:变准直用于暗场提取

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摘要

Although x-ray imaging is widely used in biomedical applications, biological soft tissues have small density changes, leading to low contrast resolution for attenuation-based x-ray imaging. Over the past years, x-ray small-angle scattering was studied as a new contrast mechanism to enhance subtle structural variation within the soft tissue. In this paper, we present a detection method to extract this type of x-ray scattering data, which are also referred to as dark-field signals. The key idea is to acquire an x-ray projection multiple times with varying collimation before an x-ray detector array. The projection data acquired with a collimator of a sufficiently high collimation aspect ratio contain mainly the primary beam with little scattering, while the data acquired with an appropriately reduced collimation aspect ratio include both the primary beam and small-angle scattering signals. Then, analysis of these corresponding datasets will produce desirable dark-field signals; for example, via digitally subtraction. In the numerical experiments, the feasibility of our dark-field detection technology is demonstrated in Monte Carlo simulation. The results show that the acquired dark field signals can clearly reveal the structural information of tissues in terms of Rayleigh scattering characteristics.
机译:尽管X射线成像广泛用于生物医学应用,但是生物软组织的密度变化很小,从而导致基于衰减的X射线成像的对比度分辨率较低。在过去的几年中,X射线小角度散射被研究为一种新的对比机制,以增强软组织内的细微结构变化。在本文中,我们提出了一种检测方法来提取这种类型的X射线散射数据,这些数据也称为暗场信号。关键思想是在X射线检测器阵列之前以不同的准直度多次获取X射线投影。用具有足够高的准直纵横比的准直仪获取的投影数据主要包含具有很少散射的主光束,而以适当减小的准直纵横比而获取的数据包括主光束和小角度散射信号。然后,对这些相应的数据集进行分析将产生理想的暗场信号。例如,通过数字减法。在数值实验中,我们的暗场检测技术的可行性在蒙特卡洛模拟中得到了证明。结果表明,所获得的暗场信号可以根据瑞利散射特性清楚地揭示组织的结构信息。

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