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Published on: March 2, 2011
Tunable Wide-Field Illumination and Single-Molecule Photoswitching with a Single MEMS Mirror
Lucas Herdly1, Paul Janin2, Ralf Bauer2
1Department of Physics, SUPA, University of Strathclyde, Glasgow, Scotland, United Kingdom.
Abstract:
Homogeneous illumination in single-molecule localization microscopy (SMLM) is key for the quantitative analysis of super-resolution images. Therefore, different approaches for flat-field illumination have been introduced as alternative to the conventional Gaussian illumination. Here, we introduce a single microelectromechanical systems (MEMS) mirror as a tunable and cost-effective device for adapting wide-field illumination in SMLM. In flat-field mode the MEMS allowed for consistent SMLM metrics across the entire field of view. Employing single-molecule photoswitching, we developed a simple yet powerful routine to benchmark different illumination schemes on the basis of local emitter brightness and ON-state lifetime. Moreover, we propose that tuning the MEMS beyond optimal flat-field conditions enables to study the kinetics of photoswitchable fluorophores within a single acquisition.

