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首页> 外文期刊>Journal of Modern Optics >Wide-field fluorescence lifetime imaging with optical sectioning and spectral resolution applied to biological samples
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Wide-field fluorescence lifetime imaging with optical sectioning and spectral resolution applied to biological samples

机译:具有光学切片和光谱分辨率的宽视野荧光寿命成像,适用于生物样品

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摘要

Wide-field fluorescence lifetime imaging with spectral resolution and optical sectioning has been performed to achieve five-dimensional fluorescence microscopy. Spectral filtering has been shown to have the potential to provide functional information about biological tissue by simultaneously measuring the spectral/lifetime signature of the sample. The potential to use multi-spectral imaging to separate cellular components spatially by their different emission wavelengths has also been demonstrated thus reducing artefacts in the calculated lifetime maps. The instrument is based on diode-pumped solid-state laser technology and an ultrafast gated optical image intensifier. Also reported is the sue of a picosecond blue laser diode as the excitation source to produce a fluorescence lifetime microscope with a footprint of less than 0.25 m~2.
机译:具有光谱分辨率和光学切片的广域荧光寿命成像已经完成,以实现五维荧光显微镜。光谱过滤已被证明具有通过同时测量样品的光谱/寿命特征来提供有关生物组织功能信息的潜力。还已经证明了使用多光谱成像通过其不同的发射波长在空间上分离细胞成分的潜力,从而减少了计算寿命图中的伪像。该仪器基于二极管泵浦固态激光技术和超快速门控光学图像增强器。还报道了使用皮秒蓝色激光二极管作为激发源来产生荧光寿命显微镜,该显微镜的足迹小于0.25 m〜2。

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