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Actinide bioimaging in tissues: Comparison of emulsion and solid track autoradiography techniques with the iQID camera

机译:组织中的in系元素生物成像:使用iQID相机比较乳剂和固体放射自显影技术

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摘要

This work presents a comparison of three autoradiography techniques for imaging biological samples contaminated with actinides: emulsion-based, plastic-based autoradiography and a quantitative digital technique, the iQID camera, based on the numerical analysis of light from a scintillator screen. In radiation toxicology it has been important to develop means of imaging actinide distribution in tissues as these radionuclides may be heterogeneously distributed within and between tissues after internal contamination. Actinide distribution determines which cells are exposed to alpha radiation and is thus potentially critical for assessing absorbed dose. The comparison was carried out by generating autoradiographs of the same biological samples contaminated with actinides with the three autoradiography techniques. These samples were cell preparations or tissue sections collected from animals contaminated with different physico-chemical forms of actinides. The autoradiograph characteristics and the performances of the techniques were evaluated and discussed mainly in terms of acquisition process, activity distribution patterns, spatial resolution and feasibility of activity quantification. The obtained autoradiographs presented similar actinide distribution at low magnification. Out of the three techniques, emulsion autoradiography is the only one to provide a highly-resolved image of the actinide distribution inherently superimposed on the biological sample. Emulsion autoradiography is hence best interpreted at higher magnifications. However, this technique is destructive for the biological sample. Both emulsion- and plastic-based autoradiography record alpha tracks and thus enabled the differentiation between ionized forms of actinides and oxide particles. This feature can help in the evaluation of decorporation therapy efficacy. The most recent technique, the iQID camera, presents several additional features: real-time imaging, separate imaging of alpha particles and gamma rays, and alpha activity quantification. The comparison of these three autoradiography techniques showed that they are complementary and the choice of the technique depends on the purpose of the imaging experiment.
机译:这项工作比较了三种放射线照相技术对受act系元素污染的生物样品进行成像的技术:基于乳剂的,基于塑料的放射线照相技术和基于闪烁屏的光的数值分析的定量数字技术iQID相机。在放射线毒理学中,发展成像act系元素在组织中分布的方法非常重要,因为这些放射性核素在内部污染后可能会在组织内部和组织之间异质分布。 in系元素的分布决定了哪些细胞暴露于α辐射,因此对于评估吸收剂量可能至关重要。通过使用三种放射自显影技术生成被generating系元素污染的相同生物样品的放射自显影照片进行比较。这些样品是从受不同物理化学形式的act系元素污染的动物收集的细胞制剂或组织切片。主要从获取过程,活动分布模式,空间分辨率和活动量化的可行性等方面对放射线照相技术的特点和性能进行了评估和讨论。获得的放射自显影照片在低放大倍数下呈现相似的similar系元素分布。在这三种技术中,乳剂放射自显影是唯一能够提供高分辨图像的,固有地叠加在生物样品上的the系元素分布的图像。因此,最好在较高放大倍率下解释乳剂放射自显影。但是,该技术对生物样品具有破坏性。基于乳液的和基于塑料的放射自显影都记录了alpha轨迹,因此可以区分ion系离子化形式和氧化物粒子。此功能可以帮助评估解体疗法的疗效。 iQID相机是最新技术,它还具有其他一些功能:实时成像,α粒子和伽马射线的单独成像以及alpha活性定量。对这三种放射自显影技术的比较表明,它们是互补的,技术的选择取决于成像实验的目的。

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