Digital imaging fluorescence microscopy: Spatial heterogeneity of photobleaching rate constants in individual cells

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Abstract

Photobleaching and related photochemical processes are recognized experimental barriers to quantification of fluorescence by microscopy. We have measured the kinetics of photobleaching of fluorophores in living and fixed cells and in microemulsions, and have demonstrated the spatial variability of these processes within individual cells. An inverted fluorescence microscope and a high-sensitivity camera, together with high-speed data acquisition by a computer-controlled image processor, have been used to control precisely exposure time to excitation light and to record images. To improve the signal-to-noise ratio, 32 digital images were integrated. After correction for spatial variations in camera sensitivity and background fluorescence, the images of the relative fluorescence intensities for 0.065 ≈m 2 areas in the object plane were obtained. © 1985, Rockefeller University Press., All rights reserved.

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Benson, D. M., Bryan, J., Plant, A. L., Gotto, A. M., & Smith, L. C. (1985). Digital imaging fluorescence microscopy: Spatial heterogeneity of photobleaching rate constants in individual cells. Journal of Cell Biology, 100(4), 1309–1323. https://doi.org/10.1083/jcb.100.4.1309

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