Implementation of a Nonlinear Microscope Based on Stimulated Raman Scattering

被引:12
作者
Ranjan, Rajeev [1 ]
Indolfi, Maurizio [1 ]
Ferrara, Maria Antonietta [1 ]
Sirleto, Luigi [1 ]
机构
[1] CNR, Inst Microelect & Microsyst, Naples Unit, Naples, Italy
来源
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS | 2019年 / 149期
关键词
Engineering; Issue; 149; microscopy; imaging systems; nonlinear optics; stimulated Raman scattering; ultrafast optics; label-free imaging; bioimaging; LIPID DROPLETS; CELLS; SIZE;
D O I
10.3791/59614
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
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 mu m. 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.
引用
收藏
页数:9
相关论文
共 50 条
[31]   Broadband Hyperspectral Stimulated Raman Scattering Microscopy with a Parabolic Fiber Amplifier Source [J].
Figueroa, Benjamin ;
Fu, Walter ;
Tai Nguyen ;
Shin, Kseniya ;
Manifold, Bryce ;
Wise, Frank ;
Fu, Dan .
HIGH-SPEED BIOMEDICAL IMAGING AND SPECTROSCOPY IV, 2019, 10889
[32]   Stimulated Raman Imaging of Lipids Droplets [J].
Ferrara, Maria Antonietta ;
Filograna, Angela ;
D'Arco, Annalisa ;
Ranjan, Rajeev ;
Valente, Carmen ;
Larobina, Michele ;
Sirleto, Luigi .
2018 20TH ANNIVERSARY INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS (ICTON), 2018,
[33]   Stimulated Raman scattering of GdVO4 crystal [J].
Hu, Dawei ;
Wang, Zhengping ;
Zhang, Huaijin ;
Xu, Xinguang ;
Wang, Jiyang ;
Shao, Zongshu .
Zhongguo Jiguang/Chinese Journal of Lasers, 2008, 35 (01) :11-16
[34]   Research on chirped pulse stimulated Raman scattering in ethanol [J].
Guo, Xiao-Yang ;
Zou, Xiao ;
Xu, Yi ;
Lu, Xiao-Ming ;
Wang, Cheng ;
Liu, Yan-Qi ;
Li, Yan-Yan ;
Leng, Yu-Xin ;
Li, Ru-Xin .
HIGH-POWER LASERS AND APPLICATIONS VII, 2014, 9266
[35]   Quantitative Stimulated Raman Scattering Microscopy: Promises and Pitfalls [J].
Manifold, Bryce ;
Fu, Dan .
ANNUAL REVIEW OF ANALYTICAL CHEMISTRY, 2022, 15 :269-289
[36]   Multicolor stimulated Raman scattering microscopy and its applications [J].
Ozeki, Yasuyuki .
BIOMEDICAL VIBRATIONAL SPECTROSCOPY 2022: ADVANCES IN RESEARCH AND INDUSTRY, 2022, 11957
[37]   Stimulated Raman scattering imaging for studying specific species [J].
Amer, Eynas ;
Gren, Per ;
Sjodahl, Mikael .
SPECKLE 2015: VI INTERNATIONAL CONFERENCE ON SPECKLE METROLOGY, 2015, 9660
[38]   Image denoising based on two widespread algorithms in femtosecond stimulated Raman scattering microscopy [J].
Costa, Giovanni ;
Ranjan, Rajeev ;
Ferrara, Maria Antonietta ;
Sansone, Mario ;
Sirleto, Luigi .
2024 24TH INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS, ICTON 2024, 2024,
[39]   Label free imaging of lipid droplets in cells by stimulated Raman microscopy [J].
Ferrara, Maria Antonietta ;
Filograna, Angela ;
D'Arco, Annalisa ;
Ranjan, Rajeev ;
Larobina, Michele ;
Valente, Carmen ;
Sirleto, Luigi .
UNCONVENTIONAL OPTICAL IMAGING, 2018, 10677
[40]   Design and implementation of the galvanometer scanning system for reflectance confocal and stimulated Raman scattering microscopy [J].
Wang F. ;
Yuan Y. ;
Sun Q. ;
Dai M. ;
Ai L. ;
Lu F. .
Chinese Optics Letters, 2021, 9 (05)