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In Silico Phase-Contrast X-Ray Imaging of Anthropomorphic Voxel-Based Phantoms

机译:在基于拟蒽醛素的微量的硅基对比X射线成像中

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Propagation-based phase-contrast X-ray imaging is an emerging technique that can improve dose efficiency in clinical imaging. In silico tools are key to understanding the fundamental imaging mechanisms and develop new applications. Here, due to the coherent nature of the phase-contrast effects, tools based on wave propagation (WP) are preferred over Monte Carlo (MC) based methods. WP simulations require very high wave-front sampling which typically limits simulations to small idealized objects. Virtual anthropomorphic voxel-based phantoms are typically provided with a resolution lower than imposed sampling requirements and, thus, cannot be directly translated for use in WP simulations. In the present paper we propose a general strategy to enable the use of these phantoms for WP simulations. The strategy is based on upsampling in the 3D domain followed by projection resulting in high-resolution maps of the projected thickness for each phantom material. These maps can then be efficiently used for simulations of Fresnel diffraction to generate in silico phase-contrast X-ray images. We demonstrate the strategy on an anthropomorphic breast phantom to simulate propagation-based phase-contrast mammography using a laboratory micro-focus X-ray source.
机译:基于传播的相位对比度X射线成像是一种新出现的技术,可以提高临床成像的剂量效率。在Silico工具中,了解基本成像机制并开发新应用的关键。这里,由于相位对比效果的相干性,基于波形传播(WP)的工具是基于蒙特卡罗(MC)的方法。 WP仿真需要非常高的波前采样,这通常将模拟限制为小型理想物体。基于虚拟拟人的基于体素的幻像通常具有低于施加的采样要求的分辨率,因此不能直接转换用于WP模拟。在本文中,我们提出了一种普遍的策略,以使这些幻像用于WP模拟。该策略基于在3D域中的上采样,然后进行投影,从而产生每个幻象材料的投影厚度的高分辨率映射。然后可以有效地将这些地图用于模拟菲涅耳衍射以产生在硅相对比X射线图像中。我们证明了使用实验室微焦X射线源模拟了拟人乳房阵线的策略来模拟基于传播的相位对比乳房X线X线源。

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