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用于微创谐波产生显微镜的基于光纤的 1150nm 飞秒激光源。

Fiber-based 1150-nm femtosecond laser source for the minimally invasive harmonic generation microscopy.

机构信息

National Taiwan University, Institute of Biomedical Engineering, Taipei, Taiwan.

National Taiwan University, Graduate Institute of Photonics and Optoelectronics, Taipei, Taiwan.

出版信息

J Biomed Opt. 2017 Mar 1;22(3):36008. doi: 10.1117/1.JBO.22.3.036008.

Abstract

Harmonic generation microscopy (HGM) has become one unique tool of optical virtual biopsy for the diagnosis of cancer and the in vivo cytometry of leukocytes. Without labeling, HGM can reveal the submicron features of tissues and cells in vivo. For deep imaging depth and minimal invasiveness, people commonly adopt 1100- to 1300-nm femtosecond laser sources. However, those lasers are typically based on bulky oscillators whose performances are sensitive to environmental conditions. We demonstrate a fiber-based 1150-nm femtosecond laser source, with 6.5-nJ pulse energy, 86-fs pulse width, and 11.25-MHz pulse repetition rate. It was obtained by a bismuth borate or magnesium-doped periodically poled lithium niobate (MgO:PPLN) mediated frequency doubling of the 2300-nm solitons, generated from an excitation of 1550-nm femtosecond pulses on a large mode area photonic crystal fiber. Combined with a home-built laser scanned microscope and a tailor-made frame grabber, we achieve a pulse-per-pixel HGM imaging in vivo at a 30-Hz frame rate. This integrated solution has the potential to be developed as a stable HGM system for routine clinical use.

摘要

谐波产生显微镜(HGM)已成为癌症光学虚拟活检和白细胞体内细胞计量学的独特工具之一。无需标记,HGM 即可揭示体内组织和细胞的亚微米特征。为了实现更深的成像深度和最小的侵入性,人们通常采用 1100nm 到 1300nm 的飞秒激光源。然而,这些激光通常基于体积庞大的振荡器,其性能对环境条件敏感。我们展示了一种基于光纤的 1150nm 飞秒激光源,其脉冲能量为 6.5nJ,脉冲宽度为 86fs,脉冲重复率为 11.25MHz。它是通过铋硼酸盐或掺镁周期性极化铌酸锂(MgO:PPLN)介导的 2300nm 孤子的倍频产生的,孤子是由在大模场光子晶体光纤上激发的 1550nm 飞秒脉冲产生的。结合我们自主研发的激光扫描显微镜和专门定制的帧抓取器,我们实现了 30Hz 帧率的体内逐像素 HGM 成像。这种集成解决方案有望发展成为一种用于常规临床应用的稳定 HGM 系统。

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