Molecular orientation affects localization accuracy in superresolution far-field fluorescence microscopy

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Abstract

We investigate the cooperative effect of molecular tilt and defocus on fluorophore localization by centroid calculation in far-field superresolution microscopy based on stochastic single molecule switching. If tilt angle and defocus are unknown, the localization contains systematic errors up to about ±:125 nm. When imaging rotation-impaired fluorophores of unknown random orientation, the average localization accuracy in three-dimensional samples is typically limited to about ±32 nm, restricting the attainable resolution accordingly. © 2011 American Chemical Society.

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Engelhardt, J., Keller, J., Hoyer, P., Reuss, M., Staudt, T., & Hell, S. W. (2011). Molecular orientation affects localization accuracy in superresolution far-field fluorescence microscopy. Nano Letters, 11(1), 209–213. https://doi.org/10.1021/nl103472b

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