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使用飞秒铬:镁橄榄石激光的多光子共聚焦显微镜。

Multiphoton confocal microscopy using a femtosecond Cr:forsterite laser.

作者信息

Liu T M, Chu S W, Sun C K, Lin B L, Cheng P C, Johnson I

机构信息

Department of Electrical Engineering and Graduate Institute of Electro-Optical Engineering, National Taiwan University, Taipei, ROC.

出版信息

Scanning. 2001 Jul-Aug;23(4):249-54. doi: 10.1002/sca.4950230405.

Abstract

With its output wavelength covering the infrared penetrating window of most biological tissues at 1,200-1,250 nm, the femtosecond Cr:forsterite laser shows high potential to serve as an excellent excitation source for the multiphoton fluorescence microscope. Its high output power, short optical pulse width, high stability, and low dispersion in fibers make it a perfect replacement for the currently widely used Ti:sapphire laser. In this paper, we study the capability of using a femtosecond Cr:forsterite laser in multiphoton scanning microscopy. We have performed the multiphoton excited photoluminescence spectrum measurement on several commonly used bioprobes using the 1,230 nm femtosecond pulses from a Cr:forsterite laser. Efficient fluorescence can be easily observed in these bioprobes through two-photon or three-photon excitation processes. These results will assist in the selection of dichroic beam splitter and band pass filters in a multiphoton microscopic system. We have also performed the autofluorescence spectrum measurement from chlorophylls in live leaves of the plant Arabidopsis thaliana excited by 1,230 nm femtosecond pulses from the Cr:forsterite laser. Bright luminescence from chlorophyll, centered at 673 and 728 nm, respectively, can be easily observed. Taking advantage of the bright two-photon photoluminescence from chlorophyll, we demonstrated the two-photon scanning paradermal and cross-sectional images of palisade mesophyll cells in live leaves of Arabidopsis thaliana.

摘要

飞秒Cr:镁橄榄石激光器的输出波长覆盖了大多数生物组织在1200 - 1250 nm的红外穿透窗口,在用作多光子荧光显微镜的优良激发源方面显示出很高的潜力。其高输出功率、短光脉冲宽度、高稳定性以及在光纤中的低色散使其成为当前广泛使用的钛宝石激光器的理想替代品。在本文中,我们研究了飞秒Cr:镁橄榄石激光器在多光子扫描显微镜中的应用能力。我们使用Cr:镁橄榄石激光器产生的1230 nm飞秒脉冲,对几种常用生物探针进行了多光子激发光致发光光谱测量。通过双光子或三光子激发过程,可以很容易地在这些生物探针中观察到高效荧光。这些结果将有助于在多光子显微镜系统中选择二向色分束器和带通滤光片。我们还对拟南芥活叶中的叶绿素进行了由Cr:镁橄榄石激光器产生的1230 nm飞秒脉冲激发的自发荧光光谱测量。可以很容易地观察到分别以673和728 nm为中心的叶绿素明亮发光。利用叶绿素明亮的双光子光致发光,我们展示了拟南芥活叶中栅栏叶肉细胞的双光子扫描表皮下和横截面图像。

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