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Optical-based molecular imaging: contrast agents and potential medical applications.

机译:基于光学的分子成像:造影剂和潜在的医学应用。

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摘要

Laser- and sensitive charge-coupled device technology together with advanced mathematical modelling of photon propagation in tissue has prompted the development of novel optical imaging technologies. Fast surface-weighted imaging modalities, such as fluorescence reflectance imaging (FRI) and 3D quantitative fluorescence-mediated tomography have now become available [1, 2]. These technical advances are paralleled by a rapid development of a whole range of new optical contrasting strategies, which are designed to generate molecular contrast within a living organism. The combination of both, technical advances of light detection and the refinement of optical contrast media, finally yields a new spectrum of tools for in vivo molecular diagnostics. Whereas the technical aspects of optical imaging are covered in more detail in a previous review article in "European Radiology" [3], this article focuses on new developments in optical contrasting strategies and design of optical contrast agents for in vivo diagnostics.
机译:激光和灵敏的电荷耦合设备技术以及组织中光子传播的高级数学模型促使了新型光学成像技术的发展。快速表面加权成像方式,例如荧光反射成像(FRI)和3D定量荧光介导的层析成像技术现在已经可用[1、2]。与这些技术进步并驾齐驱的是,一系列新的光学反差策略迅速发展,这些策略旨在在生物体内产生分子反差。结合了光检测的技术进步和光学对比剂的完善,最终产生了一系列新的体内分子诊断工具。尽管光学成像的技术方面在“欧洲放射学” [3]的先前评论文章中有更详细的介绍,但本文重点关注光学对比策略的新进展以及用于体内诊断的光学对比剂的设计。

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