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Probe design for super-multiplexed vibrational imaging

机译:超复用振动成像探头设计

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摘要

Optical microscopy has served biomedical research for decades due to its high temporal and spatial resolutions. Among various optical imaging techniques, fluorescence imaging offers superb sensitivity down to single molecule level but its multiplexing capacity is limited by intrinsically broad bandwidth. To simultaneously capture a vast number of targets, the newly emerging vibrational microscopy technique draws increasing attention as vibration spectroscopy features narrow transition linewidth. Nonetheless, unlike fluorophores that have been studied for centuries, a systematic investigation on vibrational probes is underemphasized. Herein, we reviewed some of the recent developments of vibrational probes for multiplex imaging applications, particularly those serving stimulated Raman scattering (SRS) microscopy, which is one of the most promising vibrational imaging techniques. We wish to summarize the general guidelines for developing bioorthogonal vibrational probes with high sensitivity, chemical specificity and most importantly, tunability to fulfill super-multiplexed optical imaging. Future directions to significantly improve the performance are also discussed.
机译:光学显微镜已经为几十年提供了生物医学研究,因为其高颞和空间分辨率。在各种光学成像技术中,荧光成像提供了卓越的敏感性,单分子水平,但其复用容量受到本质上宽带宽的限制。为了同时捕获大量目标,新出现的振动显微镜技术将越来越受到振动光谱功能窄过渡线宽。尽管如此,与几个世纪以来研究的荧光团不同,对振动探针的系统调查受到强调。在此,我们审查了多重成像应用的振动探针的一些发展中的一些,特别是那些服务刺激的拉曼散射(SRS)显微镜的显微镜,这是最有前途的振动成像技术之一。我们希望总结具有高灵敏度,化学特异性的生物正交振动探针的一般准则,最重要的是,可调性以实现超级复用光学成像。还讨论了未来的方向,以显着提高性能。

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