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利用受激拉曼散射和色差的多焦点光分辨光声显微镜。

Multifocus optical-resolution photoacoustic microscopy using stimulated Raman scattering and chromatic aberration.

机构信息

Department of Electrical and Computer Engineering, University of Alberta, Edmonton, Alberta, Canada.

出版信息

Opt Lett. 2013 Aug 1;38(15):2711-3. doi: 10.1364/OL.38.002711.

Abstract

In this Letter, multifocus optical-resolution photoacoustic microscopy is demonstrated using wavelength tuning and chromatic aberration for depth scanning. Discrete focal zones at several depth locations were created by refocusing light from a polarization-maintaining single-mode fiber pumped by a nanosecond fiber laser. The fiber and laser parameters were chosen to take advantage of stimulated Raman scattering (SRS) in the fiber to create a multiwavelength output that could then be bandpass filtered. The collimator lens and objective lens are chosen to take advantage of chromatic aberration in which each generated SRS wavelength peak focuses at a slightly different depth. The maximum amplitude of photoacoustic signals is mapped to form C-scan images. Additionally, all wavelength peaks fired simultaneously offers improved depth-of-field structural imaging at the cost of slight degradation of mainlobe-to-sidelobe ratios. Wavelength-tuned depth scanning over more than 440 μm is demonstrated, significantly greater than the ~100 μm depth of field predicted from our focused Gaussian beams. The improved depth of focus could be valuable for structural imaging of microvascular morphology without the need for mechanical scanning in the depth direction.

摘要

在这封信件中,通过波长调谐和色差实现了多焦点光分辨率光声显微镜的深度扫描。通过对纳秒光纤激光器泵浦的保偏单模光纤中的光进行再聚焦,在几个深度位置创建了离散的焦点区域。选择光纤和激光参数以利用光纤中的受激拉曼散射 (SRS) 来创建可进行带通滤波的多波长输出。选择准直透镜和物镜以利用色差,其中每个产生的 SRS 波长峰值聚焦在略微不同的深度。将光声信号的最大幅度映射以形成 C 扫描图像。此外,同时激发所有波长峰值可在略微降低主瓣到旁瓣比的情况下提供改进的景深结构成像。已经证明了超过 440 μm 的波长调谐深度扫描,这大大超过了我们聚焦高斯光束预测的约 100 μm 的景深。无需在深度方向进行机械扫描,这种改进的焦点深度对于微血管形态的结构成像可能非常有价值。

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