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首页> 外文期刊>Journal of Microscopy >A white light confocal microscope for spectrally resolved multidimensional imaging.
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A white light confocal microscope for spectrally resolved multidimensional imaging.

机译:一种用于光谱分辨多维成像的白光共聚焦显微镜。

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摘要

Spectrofluorometric imaging microscopy is demonstrated in a confocal microscope using a supercontinuum laser as an excitation source and a custom-built prism spectrometer for detection. This microscope system provides confocal imaging with spectrally resolved fluorescence excitation and detection from 450 to 700 nm. The supercontinuum laser provides a broad spectrum light source and is coupled with an acousto-optic tunable filter to provide continuously tunable fluorescence excitation with a 1-nm bandwidth. Eight different excitation wavelengths can be simultaneously selected. The prism spectrometer provides spectrally resolved detection with sensitivity comparable to a standard confocal system. This new microscope system enables optimal access to a multitude of fluorophores and provides fluorescence excitation and emission spectra for each location in a 3D confocal image. The speed of the spectral scans is suitable for spectrofluorometric imaging of live cells. Effects of chromatic aberration are modest and do not significantly limit the spatial resolution of the confocal measurements.
机译:分光荧光成像显微镜在共聚焦显微镜中得到了证明,该显微镜使用超连续谱激光作为激发源和定制的棱镜光谱仪进行检测。该显微镜系统提供共焦成像,并具有光谱分辨的荧光激发和从450至700 nm的检测范围。超连续谱激光器提供了一个广谱光源,并与一个声光可调滤光片耦合,以提供具有1 nm带宽的连续可调荧光激发。可以同时选择八个不同的激发波长。棱镜光谱仪可提供光谱分辨的检测,其灵敏度可与标准共焦系统媲美。这种新的显微镜系统能够最佳地访问多种荧光团,并为3D共聚焦图像中的每个位置提供荧光激发和发射光谱。光谱扫描的速度适用于活细胞的荧光光谱成像。色差的影响适中,并且不会显着限制共焦测量的空间分辨率。

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