首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences Jan 21-23, 2001, San Jose, USA >Evaluation of optical properties and micropatterning capabilities of a TPE microscope based on a compact confocal scanning head.
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Evaluation of optical properties and micropatterning capabilities of a TPE microscope based on a compact confocal scanning head.

机译:基于紧凑型共聚焦扫描头的TPE显微镜的光学特性和微图案形成能力的评估。

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We have set-up a two-photon excitation fluorescence microscope based on a compact commercial confocal laser scanning head and a mode-locked Ti:Sapphire infrared pulsed laser, directly coupled in air to the scanning head We report about the architecture and the imaging capabilities of this microscope using high numerical aperture objectives, in terms of its spatial resolution and excitation volume. One-photon and two-photon mode can be simply accomplished by switching from a mono-mode optical fiber (one-photon) coupled to conventional laser sources to an optical path in air guiding the IR laser beam (two-photon/ TPE). In both cases, an optical fiber delivers the emitted fluorescence to the control unit. Under TPE regime, the resolution (Full Width at Half Maximum intensity -FWHM) was 210 nm (x-y) and 700 nm axially at 720 nm excitation. Due to the inherent spatial selectivity of the TPE we are evaluating the utilization of the instrument for micro patterning using the property of photobleaching and the characteristics of photobleaching in comparison with the single-photon mode. Moreover, attention is given to pulse broadening as function of penetration depth. The system is mainly used for biological applications related to cell and tissue imaging and dynamic cellular processes.
机译:我们已经建立了一个基于紧凑型商用共聚焦激光扫描头和锁模的Ti:Sapphire红外脉冲激光的双光子激发荧光显微镜,该激光直接在空气中耦合到扫描头。我们报告了该体系结构和成像功能使用高数值孔径物镜的显微镜的空间分辨率和激发体积通过从耦合到常规激光源的单模光纤(单光子)切换到空气中引导IR激光束(双光子/ TPE)的光路,可以简单地实现单光子和双光子模式。在两种情况下,光纤都会将发出的荧光传递到控制单元。在TPE体制下,分辨率(半高全宽-FWHM)为210 nm(x-y),在720 nm激发下轴向分辨率为700 nm。由于TPE固有的空间选择性,我们正在评估与单光子模式相比,利用光漂白特性和光漂白特性对微图案化仪器的利用。而且,关注脉冲展宽作为穿透深度的函数。该系统主要用于与细胞和组织成像以及动态细胞过程有关的生物学应用。

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