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Coherent Raman Scattering Microscopy in Biology and Medicine

机译:生物学和医学中的相干拉曼散射显微镜

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Advancements in coherent Raman scattering (CRS) microscopy have enabled label-free visualization and analysis of functional, endogenous biomolecules in living systems. When compared with spontaneous Raman microscopy, a key advantage of CRS microscopy is the dramatic improvement in imaging speed, which gives rise to real-time vibrational imaging of live biological samples. Using molecular vibrational signatures, recently developed hyperspectral CRS microscopy has improved the readout of chemical information available from CRS images. In this article, we review recent achievements in CRS microscopy, focusing on the theory of the CRS signal-to-noise ratio, imaging speed, technical developments, and applications of CRS imaging in bioscience and clinical settings. In addition, we present possible future directions that the use of this technology may take.
机译:相干拉曼散射(CRS)显微镜的进步使得能够在生活系统中无标记可视化和分析功能,内源生物分子。 与自发拉曼显微镜相比,CRS显微镜的一个关键优势是成像速度的显着提高,这导致实时生物样品的实时振动成像。 利用分子振动签名,最近开发的高光谱CRS显微镜显微镜改善了CRS图像可获得的化学信息的读数。 在本文中,我们审查了CRS显微镜的最近成就,重点是CRS信噪比的理论,CRS成像在生物科学和临床环境中CRS成像的影像速度,技术开发和应用。 此外,我们提出了可能采用这种技术的未来方向。

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