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Embedded soft-tissue image mechanism of a small animal shell with synchrotron-based micro-CT

机译:基于同步加速器的微CT嵌入小动物壳的软组织成像机制

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Synchrotron-based micro-CT was utilized to image the embedded biological soft-tissue of a small animal shell. Micro-CT images of the biological soft-tissue were acquired using 20, 25, and 27 keV synchrotron X-rays with contrast agents, such as water, physiological saline and iodine. Visualized the complex features of the animal at the above energies with water, physiological saline and iodine. The choice of the optimum energy was chosen based on the contrast mechanisms to know more about soft-matter and the associated internal complex biological features of the small animal shell. This way, the images at 27 keV (optimum energy) was reasonably acceptable for better visualization of the interior micro-architecture, such as soft-anatomy, physiology and internal organs of the animal with better visibility. The introduction of water, physiological, or iodine as contrast agents is shown to enhance minute image features in synchrotron-based tomographic imaging.
机译:基于同步加速器的微型CT用于对小动物壳的嵌入式生物软组织成像。使用20、25和27 keV同步加速器X射线以及造影剂(例如水,生理盐水和碘)获取生物软组织的Micro-CT图像。以水,生理盐水和碘在上述能量下可视化动物的复杂特征。根据对比机制选择最佳能量,以更多地了解软物质以及相关的小动物壳内部复杂生物特征。这样,在27 keV(最佳能量)下的图像对于更好地可视化内部微体系结构(如具有更好可见性的动物的软解剖结构,生理学和内部器官)而言是可以接受的。在基于同步加速器的层析成像中,将水,生理或碘作为造影剂的引入可增强微小的图像特征。

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