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用超短白光连续脉冲进行细胞和组织的全光谱 CARS 显微镜成像。

Full-Spectrum CARS Microscopy of Cells and Tissues with Ultrashort White-Light Continuum Pulses.

机构信息

Department of Physics, Politecnico di Milano, Piazza Leonardo da Vinci 32, 20133 Milan, Italy.

CNR-Institute for Photonics and Nanotechnologies (IFN-CNR), Piazza Leonardo Da Vinci 32, 20133 Milan, Italy.

出版信息

J Phys Chem B. 2023 Jun 1;127(21):4733-4745. doi: 10.1021/acs.jpcb.3c01443. Epub 2023 May 17.

Abstract

Coherent anti-Stokes Raman scattering (CARS) microscopy is an emerging nonlinear vibrational imaging technique that delivers label-free chemical maps of cells and tissues. In narrowband CARS, two spatiotemporally superimposed picosecond pulses, pump and Stokes, illuminate the sample to interrogate a single vibrational mode. Broadband CARS (BCARS) combines narrowband pump pulses with broadband Stokes pulses to record broad vibrational spectra. Despite recent technological advancements, BCARS microscopes still struggle to image biological samples over the entire Raman-active region (400-3100 cm). Here, we demonstrate a robust BCARS platform that answers this need. Our system is based on a femtosecond ytterbium laser at a 1035 nm wavelength and a 2 MHz repetition rate, which delivers high-energy pulses used to produce broadband Stokes pulses by white-light continuum generation in a bulk YAG crystal. Combining such pulses, pre-compressed to sub-20 fs duration, with narrowband pump pulses, we generate a CARS signal with a high (<9 cm) spectral resolution in the whole Raman-active window, exploiting both the two-color and three-color excitation mechanisms. Aided by an innovative post-processing pipeline, our microscope allows us to perform high-speed (≈1 ms pixel dwell time) imaging over a large field of view, identifying the main chemical compounds in cancer cells and discriminating tumorous from healthy regions in liver slices of mouse models, paving the way for applications in histopathological settings.

摘要

相干反斯托克斯拉曼散射(CARS)显微镜是一种新兴的非线性振动成像技术,可提供细胞和组织的无标记化学图谱。在窄带 CARS 中,两个时空重叠的皮秒脉冲,泵浦和斯托克斯,照亮样品以询问单个振动模式。宽带 CARS(BCARS)将窄带泵浦脉冲与宽带斯托克斯脉冲相结合,以记录宽的振动光谱。尽管最近取得了技术进步,但 BCARS 显微镜仍然难以在整个拉曼活性区域(400-3100cm)内对生物样品进行成像。在这里,我们展示了一个强大的 BCARS 平台,满足了这一需求。我们的系统基于 1035nm 波长和 2MHz 重复率的飞秒掺镱激光器,该激光器可提供高能量脉冲,通过在块状 YAG 晶体中产生白光连续体来产生宽带斯托克斯脉冲。将这种脉冲(压缩到 20fs 以下的预压缩脉冲)与窄带泵浦脉冲相结合,我们在整个拉曼活性窗口中产生了具有高(<9cm)光谱分辨率的 CARS 信号,利用双色和三色激发机制。借助创新的后处理管道,我们的显微镜允许我们在大视场中进行高速(≈1ms 像素停留时间)成像,识别癌细胞中的主要化学化合物,并区分小鼠模型肝切片中的肿瘤和健康区域,为组织病理学应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a681/10240501/783d5dbdbf6d/jp3c01443_0002.jpg

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