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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Vibrational imaging and microspectroscopies based on coherent anti-Stokes Raman scattering microscopy
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Vibrational imaging and microspectroscopies based on coherent anti-Stokes Raman scattering microscopy

机译:基于相干反斯托克斯拉曼散射显微镜的振动成像和显微光谱

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摘要

For noninvasive characterization of chemical species or biological components within a complex heterogeneous system, their intrinsic molecular vibrational properties can be used in contrast mechanisms in optical microscopy. A series of recent advances have made coherent anti-Stokes Raman scattering (CARS) microscopy a powerful technique that allows vibrational imaging with high sensitivity, high spectral resolution and three-dimensional sectioning capability. In this review, we discuss theoretical and experimental aspects of CARS microscopy in a collinear excitation beam geometry. Particular attention is given to the underlying physical principles behind the new features of CARS signal generation under tight focusing conditions. We provide a brief overview of the instrumentation of CARS microscopy and its experimental characterization by means of imaging of model systems and live unstained cells. CARS microscopy offers the possibility of spatially resolved vibrational spectroscopy, providing chemical and physical structure information of molecular specimens on the sub-micrometre length scale. We review multiplex CARS microspectroscopy allowing fast acquisition of frequency-resolved CARS spectra, time-resolved CARS microspectroscopy recording ultrafast Raman free induction decays and CARS correlation spectroscopy probing dynamical processes with chemical selectivity.
机译:为了对复杂的异构系统中的化学物种或生物成分进行非侵入式表征,可以将其固有的分子振动特性用于光学显微镜的对比机制中。相干抗斯托克斯拉曼散射(CARS)显微镜技术是一系列最新技术,它使振动成像具有高灵敏度,高光谱分辨率和三维切片能力,是一项功能强大的技术。在这篇综述中,我们讨论了共线激发光束几何结构中CARS显微镜的理论和实验方面。特别关注在严格聚焦条件下产生CARS信号的新功能背后的基本物理原理。我们通过对模型系统和未染色的活细胞进行成像,简要概述了CARS显微镜的仪器及其实验特性。 CARS显微镜提供了空间分辨振动光谱学的可能性,提供了亚微米长度范围内分子标本的化学和物理结构信息。我们回顾了允许快速获取频率分辨的CARS光谱,记录超快速拉曼自由感应衰变的时间分辨的CARS显微光谱和CARS相关光谱以化学选择性探测动力学过程的多重CARS显微光谱。

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