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采用稳定温度调节受激拉曼散射光源的功能光声远程感测显微镜。

Functional photoacoustic remote sensing microscopy using a stabilized temperature-regulated stimulated Raman scattering light source.

出版信息

Opt Express. 2021 Sep 13;29(19):29745-29754. doi: 10.1364/OE.434004.

Abstract

Stimulated Raman scattering (SRS) has been widely used in functional photoacoustic microscopy to generate multiwavelength light and target multiple chromophores inside tissues. Despite offering a simple, cost-effective technique with a high pulse repetition rate; it suffers from pulse-to-pulse intensity fluctuations and power drift that can affect image quality. Here, we propose a new technique to improve the temporal stability of the pulsed SRS multiwavelength source. We achieve this by lowering the temperature of the SRS medium. The results suggest that a decrease in temperature causes an improvement of temporal stability of the output, considerable rise in the intensity of the SRS peaks, and significant increase of SRS cross section. The application of the method is shown for in vivo functional imaging of capillary networks in a chicken embryo chorioallantois membrane using photoacoustic remote sensing microscopy.

摘要

受激拉曼散射(SRS)已广泛应用于功能光声显微镜中,以产生多波长光并靶向组织内的多个发色团。尽管 SRS 多波长源具有简单、经济高效且具有高脉冲重复率的优点;但它存在脉冲间强度波动和功率漂移的问题,这会影响图像质量。在这里,我们提出了一种新技术来提高脉冲 SRS 多波长源的时间稳定性。我们通过降低 SRS 介质的温度来实现这一点。结果表明,降低温度会提高输出的时间稳定性,显著增加 SRS 峰的强度,并显著增加 SRS 截面。该方法已应用于使用光声遥感显微镜对鸡胚绒毛尿囊膜中的毛细血管网络进行体内功能成像。

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