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首页> 外文期刊>Journal of Microscopy >A comparison of optical geometries for combined flash photolysis and total internal reflection fluorescence microscopy
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A comparison of optical geometries for combined flash photolysis and total internal reflection fluorescence microscopy

机译:组合闪光光解和全内反射荧光显微镜的光学几何比较

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Total internal reflection fluorescence (TIRF) microscopy, used in conjunction with flash photolysis, provides a useful way of investigating the kinetics of macromolecular interactions. We compare different TIRF optical geometries to establish an optimal combination. Excitation light was introduced via four different arrangements: (1) a prism positioned on the microscope optical axis, (2) an offset prism with propagation through a silica slide trans to the objective lens, (3) an offset prism with propagation through a silica coverslip cis to a water-immersion objective lens and (4) a prismless arrangement using a high NA oil-immersion objective lens. Photolysis was achieved using a Xe flash lamp and a customised silica condenser lens. Single myosin molecules labelled with a Cy3 fluorophore were used as a test sample, Although the offset trans prism gave the best signal-to-background ratio, a customised thin rhombic prism incorporated, on axis, into the flash condenser assembly was almost as good and was more practical for scanning multiple fields. An oil-immersion lens gave the brightest image for sample depths <30 m but above this limit, a water-immersion lens tvas better. The prismless arrangement may offer advantages in other situations but it is important to check the actual numerical aperture of the objective lens. [References: 24]
机译:全内反射荧光(TIRF)显微镜与闪光光解法一起使用,为研究大分子相互作用的动力学提供了一种有用的方法。我们比较不同的TIRF光学几何形状以建立最佳组合。激发光是通过四种不同的设置引入的:(1)位于显微镜光轴上的棱镜;(2)偏移棱镜,其通过二氧化硅载玻片传播到物镜;(3)偏移棱镜,其通过二氧化硅传播盖玻片顺式至水浸物镜,(4)使用高NA油浸式物镜的无棱镜装置。使用Xe闪光灯和定制的二氧化硅聚光镜可实现光解。用Cy3荧光团标记的单个肌球蛋白分子用作测试样品。尽管偏心反棱镜提供了最佳的信噪比,但在轴向上将定制的细菱形棱镜并入了闪速聚光镜组件,效果几乎一样好,并且扫描多个字段更为实用。对于小于30μm的样品深度,油浸式透镜可提供最亮的图像,但在此极限以上,水浸式透镜的效果更好。无棱镜装置在其他情况下可能会提供优势,但是检查物镜的实际数值孔径很重要。 [参考:24]

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