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SNR comparisons of absorption and fluorescence modes of edge-subtraction imaging

机译:边缘减法成像的吸收和荧光模式的SNR比较

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In this work, we calculate and compare the sensitivity achievable by synchrotron-based absorption subtraction imaging and fluorescence subtraction imaging. In biomedical synchrotron imaging, it is often desirable to be able to quantify the concentration of specific elements, including endogenous trace metals, such as zinc or copper, and exogenous metals used as contrast agents, such as iodine or gold. There are two principal ways of achieving elementally specific imaging using x-rays: through absorption-based methods or through fluorescence-based methods. When assuming the spatial resolution of the two approaches can be matched we find that, all else being held equal, the absorption edge imaging has advantages for elements that are present in high concentrations and the fluorescence imaging for elements that are present in low concentrations. These results confirm the findings of Zhang et al. but provide quantitative tools for predicting the regime where each method holds an advantage for a given elemental concentration and background.
机译:在这项工作中,我们计算并比较了基于同步的吸收减法成像和荧光减法成像所获得的灵敏度。在生物医学同步成像中,通常希望能够量化特定元素的浓度,包括内源性痕量金属,例如锌或铜,以及用作造影剂的外源金属,例如碘或金。有两种主要方法可以使用X射线实现基本的特定成像:通过基于吸收的方法或通过基于荧光的方法。当假设可以匹配两种方法的空间分辨率时,我们发现,所有其他相同的否则,吸收边缘成像具有高浓度的元素和以低浓度存在的元素存在的元素的优点。这些结果证实了张等人的研究结果。但是提供定量工具,用于预测每个方法对于给定的元素浓度和背景具有优势的状态。

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