Sample drift estimation method based on speckle patterns formed by backscattered laser light

in: Biomedical Optics Express (2019)
Chen, Shih-Ya; Heintzmann, Rainer; Cremer, Christoph
Single molecule localization microscopy (SMLM) has been established to acquire images with unprecedented resolution down to several nanometers. A typical time scale for image acquisition is several minutes to hours. Yet it is difficult to avoid completely sample drift for long time measurements. To estimate drift, we present a method based on the evaluation of speckle patterns formed by laser light scattered by cells in reverse direction using a single molecule localization microscope setup. A z-stack of unique speckle patterns is recorded prior the measurements as a three dimensional position reference. During the experiment, images of scattered laser light acquired, and correlated individually with each of the images of the speckle reference stack to estimate x, y and z drift. Our method shows highly comparable results with a fiducial marker approach, achieving a precision of several nanometers. This method can also benefit for the three dimensional stabilization of microscopy systems without any additional sample preparation.

Third party cookies & scripts

This site uses cookies. For optimal performance, smooth social media and promotional use, it is recommended that you agree to third party cookies and scripts. This may involve sharing information about your use of the third-party social media, advertising and analytics website.
For more information, see privacy policy and imprint.
Which cookies & scripts and the associated processing of your personal data do you agree with?

You can change your preferences anytime by visiting privacy policy.