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In vivo small animal micro-CT using nanoparticle contrast agents

机译:纳米粒子造影剂的体内小动物微型CT

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Computed tomography (CT) is one of the most valuable modalities for in vivo imaging because it is fast, high-resolution, cost-effective, and non-invasive. Moreover, CT is heavily used not only in the clinic (for both diagnostics and treatment planning) but also in preclinical research as micro-CT. Although CT is inherently effective for lung and bone imaging, soft tissue imaging requires the use of contrast agents. For small animal micro-CT, nanoparticle contrast agents are used in order to avoid rapid renal clearance. A variety of nanoparticles have been used for micro-CT imaging, but the majority of research has focused on the use of iodine-containing nanoparticles and gold nanoparticles. Both nanoparticle types can act as highly effective blood pool contrast agents or can be targeted using a wide variety of targeting mechanisms. CT imaging can be further enhanced by adding spectral capabilities to separate multiple co-injected nanoparticles in vivo . Spectral CT, using both energy-integrating and energy-resolving detectors, has been used with multiple contrast agents to enable functional and molecular imaging. This review focuses on new developments for in vivo small animal micro-CT using novel nanoparticle probes applied in preclinical research.
机译:计算机断层扫描(CT)是体内成像最有价值的方法之一,因为它是快速,高分辨率,经济高效且无创的。此外,CT不仅在临床上(用于诊断和治疗计划),而且在临床前研究中都大量使用,如微型CT。尽管CT对肺部和骨骼成像具有内在的有效性,但是软组织成像需要使用造影剂。对于小型动物微型CT,使用纳米粒子造影剂以避免肾脏快速清除。多种纳米颗粒已用于微CT成像,但大多数研究集中在含碘纳米颗粒和金纳米颗粒的使用上。两种纳米颗粒都可以充当高效的血池造影剂,也可以使用多种靶向机制进行靶向。通过增加光谱功能以在体内分离多个共同注入的纳米粒子,可以进一步增强CT成像。使用能量积分和能量分辨检测器的光谱CT已与多种造影剂一起使用,以实现功能和分子成像。这篇综述的重点是使用在临床前研究中应用的新型纳米粒子探针的体内小动物微型CT的新发展。

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