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Advances in frequency-domain fluorometry gigahertz instrumentation time-dependent photomigration and fluorescence lifetime imaging

机译:频域荧光测定仪表仪表时间依赖性光散和荧光寿命成像的进展

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During the past seven years, there have been remarkable advances in the frequency-domain method for measurement of time-resolved emission or light scattering. In this presentation we describe the recent extension of the frequency range to 10 GHz using a specially designed microchannel plate PMT. Experimental data will be shown for measurement of picosecond rotational diffusion and for sub-picosecond resolution of time delays. The resolution of ps to ns timescale processes is not obtained at the expense of sensitivity or is it shown by measurements on the intrinsic tryptophan emission from hemoglobin. We also describe a time- resolved reflectance imaging experiment on a scattering medium containing an absorbing object. Time-resolved imaging of the back-scattered light is realized by means of a RF-phase-sensitive camera, synchronized to the laser pulses. By processing the stored images, a final image can be created, the contrast of which is based only on time differences of the back-scattered photons. This image reveals the presence and position of the absorber within the scattering medium. And finally, we describe a new methodology, fluorescence lifetime imaging (FLIM), in which the contrast depends on the fluorescence lifetime at each point in a two-dimensional image, and not the local concentration and/or intensity of the fluorophore. We used FLIM to create lifetime images of NADH when free in solution and when bound to malate dehydrogenase. FLIM has numerous potential applications in cell biology and imaging.
机译:在过去的七年中,频域方法具有显着进展,用于测量时间分辨排放或光散射。在本演示文献中,我们使用专门设计的微通道板PMT描述频率范围的最近延伸到10GHz。将显示实验数据,用于测量PICOSECOND旋转扩散和时间延迟的子微观分辨率。 PS对NS时间尺度过程的分辨率不以敏感性的牺牲品获得,或者通过测量血红蛋白的内在色氨酸排放来显示。我们还描述了含有吸收物体的散射介质上的时间分辨反射成像实验。通过RF相敏感相机实现后散射光的时间分辨成像,与激光脉冲同步。通过处理存储的图像,可以创建最终图像,其对比度仅基于背部散射光子的时间差。该图像显示吸收器在散射介质内的存在和位置。最后,我们描述了一种新方法,荧光寿命成像(FLIM),其中对比度取决于在二维图像中的每个点处的荧光寿命,而不是荧光团的局部浓度和/或强度。我们使用Flim在溶液中自由制作NADH的寿命图像,并且当与苹果酸脱氢酶结合时。 Flim在细胞生物学和成像中具有许多潜在的应用。

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