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基于受激拉曼散射的非线性显微镜的实现

Implementation of a Nonlinear Microscope Based on Stimulated Raman Scattering.

作者信息

Ranjan Rajeev, Indolfi Maurizio, Ferrara Maria Antonietta, Sirleto Luigi

机构信息

National Research Council, Institute for Microelectronics and Microsystems, Naples Unit, Italy.

National Research Council, Institute for Microelectronics and Microsystems, Naples Unit, Italy;

出版信息

J Vis Exp. 2019 Jul 6(149). doi: 10.3791/59614.

Abstract

Stimulated Raman scattering (SRS) microscopy uses near-infrared excitation light; therefore, it shares many multi-photon microscopic imaging properties. SRS imaging modality can be obtained using commercial laser-scanning microscopes by equipping with a non-descanned forward detector with proper bandpass filters and lock-in amplifier (LIA) detection scheme. A schematic layout of a typical SRS microscope includes the following: two pulsed laser beams, (i.e., the pump and probe directed in a scanning microscope), which must be overlapped in both space and time at the image plane, then focused by a microscope objective into the sample through two scanning mirrors (SMs), which raster the focal spot across an x-y plane. After interaction with the sample, transmitted output pulses are collected by an upper objective and measured by a forward detection system inserted in an inverted microscope. Pump pulses are removed by a stack of optical filters, whereas the probe pulses that are the result of the SRS process occurring in the focal volume of the specimen are measured by a photodiode (PD). The readout of the PD is demodulated by the LIA to extract the modulation depth. A two-dimensional (2D) image is obtained by synchronizing the forward detection unit with the microscope scanning unit. In this paper, the implementation of an SRS microscope is described and successfully demonstrated, as well as the reporting of label-free images of polystyrene beads with diameters of 3 µm. It is worth noting that SRS microscopes are not commercially available, so in order to take advantage of these characteristics, the homemade construction is the only option. Since SRS microscopy is becoming popular in many fields, it is believed that this careful description of the SRS microscope implementation can be very useful for the scientific community.

摘要

受激拉曼散射(SRS)显微镜使用近红外激发光;因此,它具有许多多光子显微成像特性。通过配备具有适当带通滤波器的非扫描前向探测器和锁相放大器(LIA)检测方案,利用商用激光扫描显微镜即可获得SRS成像模式。典型SRS显微镜的示意图布局如下:两束脉冲激光束,即泵浦光和探测光(在扫描显微镜中定向传播),它们必须在图像平面上在空间和时间上都重叠,然后通过显微镜物镜经两个扫描镜聚焦到样品中,扫描镜在x - y平面上对焦点进行光栅扫描。与样品相互作用后,透射输出脉冲由上方物镜收集,并由倒置显微镜中插入的前向检测系统进行测量。泵浦脉冲通过一叠光学滤波器滤除,而在样品焦体积中发生SRS过程产生的探测脉冲则由光电二极管(PD)测量。PD的读数由LIA解调以提取调制深度。通过使前向检测单元与显微镜扫描单元同步获得二维(2D)图像。本文描述并成功演示了SRS显微镜的实现,以及直径为3 µm的聚苯乙烯珠的无标记图像报告。值得注意的是,SRS显微镜尚无商业产品,因此为了利用这些特性,自制是唯一选择。由于SRS显微镜在许多领域正变得越来越流行,相信对SRS显微镜实现的详细描述对科学界会非常有用。

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