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具有快速宽带傅里叶变换相干拉曼模态的多模态激光扫描非线性光学显微镜。

Multimodal laser-scanning nonlinear optical microscope with a rapid broadband Fourier-transform coherent Raman modality.

作者信息

Sinjab Faris, Hashimoto Kazuki, Badarla Venkata Ramaiah, Omachi Junko, Ideguchi Takuro

出版信息

Opt Express. 2020 Jul 6;28(14):20794-20807. doi: 10.1364/OE.397521.

Abstract

Nonlinear optical microscopy allows for rapid high-resolution microscopy with image contrast generated from the intrinsic properties of the sample. Established modalities, such as multiphoton excited fluorescence and second/third-harmonic generation, can be combined with other nonlinear techniques, such as coherent Raman spectroscopy, which typically allow chemical imaging of a single resonant vibrational mode of a sample. Here, we utilize a single ultrafast laser source to obtain broadband coherent Raman spectra on a microscope, together with other nonlinear microscopy approaches on the same instrument. We demonstrate that the coherent Raman modality allows broadband measurement (>1000 cm), with high spectral resolution (<5 cm), with a rapid spectral acquisition rate (3-12 kHz). This enables Raman hyperspectral imaging of kilo-pixel images at >11 frames per second.

摘要

非线性光学显微镜能够实现快速高分辨率显微镜成像,其图像对比度由样品的固有特性产生。已有的成像方式,如多光子激发荧光和二次/三次谐波产生,可以与其他非线性技术相结合,比如相干拉曼光谱,相干拉曼光谱通常允许对样品的单个共振振动模式进行化学成像。在此,我们利用单一超快激光源在显微镜上获取宽带相干拉曼光谱,同时在同一仪器上采用其他非线性显微镜方法。我们证明,相干拉曼成像方式能够实现宽带测量(>1000 cm⁻¹)、高光谱分辨率(<5 cm⁻¹)以及快速光谱采集速率(3 - 12 kHz)。这使得能够以每秒>11帧的速度对数千像素的图像进行拉曼高光谱成像。

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