首页> 外文期刊>Physics in medicine and biology. >Experimental demonstration of benchtop x-ray fluorescence computed tomography (XFCT) of gold nanoparticle-loaded objects using lead- and tin-filtered polychromatic cone-beams
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Experimental demonstration of benchtop x-ray fluorescence computed tomography (XFCT) of gold nanoparticle-loaded objects using lead- and tin-filtered polychromatic cone-beams

机译:使用铅和锡过滤的多色锥束对金纳米颗粒负载物体进行台式X射线荧光计算机断层扫描(XFCT)的实验演示

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摘要

This report presents the first experimental demonstration, to our knowledge, of benchtop polychromatic cone-beam x-ray fluorescence computed tomography (XFCT) for a simultaneous determination of the spatial distribution and amount of gold nanoparticles (GNPs) within small-animal-sized objects. The current benchtop experimental setup successfully produced XFCT images accurately showing the regions containing small amount of GNPs (on the order of 0.1 mg) within a 3 cm diameter plastic phantom. In particular, the performance of the current XFCT setup was improved remarkably (e.g., at least a factor of 3 reduction in XFCT scan time) using a tin-filtered polychromatic beam in comparison with a lead-filtered beam. The results of this study strongly suggest that the current benchtop XFCT configuration can be made practical with a few modifications such as the deployment of array detectors, while meeting realistic constraints on x-ray dose, scan time and image resolution for routine pre-clinical in vivo imaging with GNPs.
机译:据我们所知,本报告提供了台式多色锥束X射线荧光计算机断层扫描(XFCT)的第一个实验演示,用于同时测定小动物物体中金纳米颗粒(GNP)的空间分布和数量。当前的台式实验装置成功产生了XFCT图像,准确显示了直径3 cm的塑料体模中包含少量GNP(0.1 mg量级)的区域。特别是,与铅过滤光束相比,使用锡过滤的多色光束显着改善了当前XFCT设置的性能(例如,XFCT扫描时间至少减少了3倍)。这项研究的结果有力地表明,通过一些修改(例如部署阵列检测器),可以满足当前台式XFCT配置的实际需要,同时满足常规临床前X射线剂量,扫描时间和图像分辨率的实际限制。用GNP进行体内成像。

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