首页> 外文会议>Novel Optical Instrumentation for Biomedical Applications II; Progress in Biomedical Optics and Imaging; vol.6 no.33 >Sensing cellular function and molecular activity in vivo using fluorescence lifetime imaging microscopy (FLIM)
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Sensing cellular function and molecular activity in vivo using fluorescence lifetime imaging microscopy (FLIM)

机译:使用荧光寿命成像显微镜(FLIM)感应体内的细胞功能和分子活性

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In contrast to intensity-based fluorescence microscopy, fluorescence lifetime imaging microscopy (FLIM) bases image contrast on fluorophore excited-state lifetime. This technique is sensitive to the fluorophore's local environment (temperature, ion concentration, dissolved gas concentration, and molecular associations), while being independent of factors impacting fluorescence intensity (fluorophore concentration, photobleaching, scattering, and absorption). We present design features of a novel UV-visible-NIR wide-field time-domain FLIM system with optical sectioning (10 μm), high temporal discrimination (50 ps), and large temporal dynamic range (750 ps - 1 μs), and apply the system to probe cellular metabolic function and detect molecular activity in vivo.
机译:与基于强度的荧光显微镜相反,荧光寿命成像显微镜(FLIM)将图像对比度基于荧光团的激发态寿命。该技术对荧光团的局部环境(温度,离子浓度,溶解气体浓度和分子缔合)敏感,而与影响荧光强度的因素(荧光团浓度,光漂白,散射和吸收)无关。我们介绍了具有光学切片(10μm),高时间分辨力(50 ps)和大时间动态范围(750 ps-1μs)的新型UV-NIR广域时域FLIM系统的设计特征,以及将系统应用于探测细胞代谢功能并检测体内分子活性。

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