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Advanced radionuclide detection techniques for in vitro and in vivo animal imaging.

机译:用于体外和体内动物成像的先进放射性核素检测技术。

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摘要

This review of the different methodologies used for animal imaging with radioactive compounds presents the most recent approaches developed for both in vitro and in vivo studies. The choice of a detector for analysis of the spatial distribution of radionuclides deposited in biological tissues results in a trade-off between the size and nature of the region to study (in vitro or in vivo), the required spatial resolution and the penetrating characteristics of the ionizing radiation. Real time detectors are now available for quantitative imaging of 2D or 3D radioactive samples and offer either an increased dynamic range or a lowered sensitivity in comparison with film radioautography. For high resolution imaging, two specific techniques are proposed for applications to rodents. The usefulness of self-triggering intensified charge coupled device (STIC) is illustrated for in vitro localization in radiotoxicological studies of alpha-emitters. For in vivo techniques, the performance of positron emission tomography (PET) is discussed, as a promising method of molecular imaging of biological processes.
机译:这项对放射性化合物进行动物成像的不同方法的综述提供了针对体外和体内研究开发的最新方法。选择检测器来分析沉积在生物组织中的放射性核素的空间分布会导致在要研究的区域(体外或体内)的大小和性质,所需的空间分辨率和渗透特性之间做出权衡电离辐射。现在,实时检测器可用于对2D或3D放射性样品进行定量成像,与胶片放射自显影术相比,它可以提供更大的动态范围或更低的灵敏度。对于高分辨率成像,提出了两种特定技术用于啮齿动物。自触发增强型电荷耦合器件(STIC)的有用性在α发射体的放射毒理学研究中用于体外定位。对于体内技术,讨论了正电子发射断层扫描(PET)的性能,作为一种有前途的生物过程分子成像方法。

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