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In-Vivo functional optical-resolution photoacoustic microscopy with stimulated Raman scattering fiber-laser source

机译:体内功能光学分辨率光声显微镜带有受激拉曼散射光纤-激光源

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摘要

In this paper a multi-wavelength optical-resolution photoacoustic microscopy (OR-PAM) system using stimulated Raman scattering is demonstrated for both phantom and in vivo imaging. A 1-ns pulse width ytterbium-doped fiber laser is coupled into a single-mode polarization maintaining fiber. Discrete Raman-shifted wavelength peaks extending to nearly 800 nm are generated with pulse energies sufficient for OR-PAM imaging. Bandpass filters are used to select imaging wavelengths. A dual-mirror galvanometer system was used to scan the focused outputs across samples of carbon fiber networks, 200μm dye-filled tubes, and Swiss Webster mouse ears. Photoacoustic signals were collected in transmission mode and used to create maximum amplitude projection C-scan images. Double dye experiments and in vivo oxygen saturation estimation confirmed functional imaging potential.
机译:在本文中,已证明了使用受激拉曼散射的多波长光学分辨率光声显微镜(OR-PAM)系统可用于幻像和体内成像。 1 ns脉冲宽度掺tter光纤激光器耦合到单模保偏光纤中。利用足以进行OR-PAM成像的脉冲能量,产生了延伸至近800 nm的离散拉曼位移波长峰值。带通滤光片用于选择成像波长。使用双镜振镜系统扫描碳纤维网络,200μm充满染料的管和Swiss Webster鼠耳样品的聚焦输出。在传输模式下收集光声信号,并将其用于创建最大振幅投影C扫描图像。双重染料实验和体内氧饱和度估计证实了功能成像的潜力。

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