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Recent Progress in Photoacoustic Molecular Imaging

机译:光声分子成像的最新进展

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摘要

By acoustically detecting the optical absorption contrast, photoacoustic (PA) tomography (PAT) has broken the penetration limits of traditional high-resolution optical imaging. Through spectroscopic analysis of the target’s optical absorption, PAT can identify a wealth of endogenous and exogenous molecules and thus is inherently capable of molecular imaging with high sensitivity. PAT’s molecular sensitivity is uniquely accompanied by non-ionizing radiation, high spatial resolution, and deep penetration in biological tissues, which other optical imaging modalities cannot achieve yet. In this concise review, we summarize the most recent technological advancements in PA molecular imaging and highlight the novel molecular probes specifically made for PAT in deep tissues. We conclude with a brief discussion of the opportunities for future advancements.
机译:通过声学检测光学吸收对比度,光声(PA)层析成像(PAT)突破了传统高分辨率光学成像的穿透极限。通过对目标的光吸收进行光谱分析,PAT可以识别大量的内源性和外源性分子,因此具有固有的高灵敏度分子成像能力。 PAT的分子敏感性独特地伴随着非电离辐射,高空间分辨率和在生物组织中的深层渗透,而其他光学成像方式尚无法实现。在这篇简明的综述中,我们总结了PA分子成像的最新技术进展,并重点介绍了专为深部组织的PAT设计的新型分子探针。最后,我们简要讨论了未来发展的机会。

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