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Determination and correction of position detection nonlinearity in single particle tracking and three-dimensional scanning probe microscopy

  • European Molecular Biology Laboratory

Research output: Contribution to journalArticlepeer-review

17 Scopus citations

Abstract

A general method is presented for determining and correcting nonlinear position detector responses in single particle tracking as used in three-dimensional scanning probe microscopy based on optical tweezers. The method uses locally calculated mean square displacements of a Brownian particle to detect spatial changes in the sensitivity of the detector. The method is applied to an optical tweezers setup, where the position fluctuations of a microsphere within the optical trap are measured by an interferometric detection scheme with nanometer precision and microsecond temporal resolution. Detector sensitivity profiles were measured at arbitrary positions in solution with a resolution of approximately 6 nm and 20 nm in the lateral and axial directions, respectively. Local detector sensitivities are used to reconstruct the real positions of the particle from the measured position signals.

Original languageEnglish
Pages (from-to)425-434
Number of pages10
JournalMicroscopy and Microanalysis
Volume10
Issue number4
DOIs
StatePublished - Aug 2004

Keywords

  • Brownian motion
  • Detection nonlinearities
  • Local mean square displacement (MSD)
  • Optical trap
  • Optical tweezers
  • Single particle tracking (SPT)
  • Thermal noise imaging
  • Three-dimensional position detection
  • Three-dimensional scanning probe microscopy

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