论文标题

全场X射线散射断层扫描

Full field X-ray Scatter Tomography

论文作者

Ruben, Gary, Pinar, Isaac, Brown, Jeremy M. C., Schaff, Florian, Pollock, James A., Crossley, Kelly J., Maksimenko, Anton, Hall, Chris, Hausermann, Daniel, Uesugi, Kentaro, Kitchen, Marcus J.

论文摘要

在X射线成像中,光子是通过受试者传播和吸收的,但也有大量散布。先前尝试使用散射光子进行生物成像的尝试使用的铅笔或风扇束照明。在这里,我们使用全场照明介绍3D X射线散射断层扫描。对幻影和少年大鼠的胸部进行同步成像实验。用单独的相机同时成像传输和散射的光子。样品阶段直接下游的科学摄像头,以及一个像素化的检测器,带有针孔成像系统的像素化探测器,位于45 $ {}^\ circ $上。我们获得了足以分割大鼠肺和主要气道的散射断层图。散点断层片段中的图像对比接近传输成像的图像,表明我们案例中存在的多个散射量的稳定性。这打开了使用其他散点探测器增强全场2D成像系统的可能性,以获得互补的模式或提高现有图像的忠诚度,而无需额外的剂量,可能导致单次射击或减少角度的层析成像或减少现场动物研究的整体剂量。

In X-ray imaging, photons are transmitted through and absorbed by the subject, but are also scattered in significant quantities. Previous attempts to use scattered photons for biological imaging used pencil or fan beam illumination. Here we present 3D X-ray Scatter Tomography using full-field illumination. Synchrotron imaging experiments were performed of a phantom and the chest of a juvenile rat. Transmitted and scattered photons were simultaneously imaged with separate cameras; a scientific camera directly downstream of the sample stage, and a pixelated detector with a pinhole imaging system placed at 45${}^\circ$ to the beam axis. We obtained scatter tomogram feature fidelity sufficient for segmentation of the lung and major airways in the rat. The image contrast in scatter tomogram slices approached that of transmission imaging, indicating robustness to the amount of multiple scattering present in our case. This opens the possibility of augmenting full-field 2D imaging systems with additional scatter detectors to obtain complementary modes or to improve the fidelity of existing images without additional dose, potentially leading to single-shot or reduced-angle tomography or overall dose reduction for live animal studies.

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