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Opt Express ; 20(3): 1953-62, 2012 Jan 30.
Article in English | MEDLINE | ID: mdl-22330436

ABSTRACT

Motion analysis of optically trapped objects is demonstrated using a simple 2D Fourier transform technique. The displacements of trapped objects are determined directly from the phase shift between the Fourier transform of subsequent images. Using end- and side-view imaging, the stiffness of the trap is determined in three dimensions. The Fourier transform method is simple to implement and applicable in cases where the trapped object changes shape or where the lighting conditions change. This is illustrated by tracking a fluorescent particle and a myoblast cell, with subsequent determination of diffusion coefficients and the trapping forces.


Subject(s)
Models, Biological , Models, Chemical , Myoblasts/physiology , Myoblasts/radiation effects , Nanoparticles/chemistry , Nanoparticles/radiation effects , Optical Tweezers , Animals , Cell Movement/physiology , Cell Movement/radiation effects , Cells, Cultured , Computer Simulation , Fourier Analysis , Mice
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