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Birefringent Fourier filtering for single molecule Coordinate and Height super-resolution Imaging with Dithering and Orientation

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arxiv 1907.05828 v3 pith:TAEMGWOE submitted 2019-07-12 physics.optics physics.bio-ph

classification physics.opticsphysics.bio-ph
keywords orientationimagingsinglemoleculepositioncontrolditheringfourier
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Super-resolution imaging based on single molecule localization allows accessing nanometric-scale information in biological samples with high precision. However, complete measurements including molecule orientation are still challenging. Orientation is intrinsically coupled to position in microscopy imaging, and molecular wobbling during the image integration time can bias orientation measurements. Providing 3D molecular orientation and orientational fluctuations can offer new ways to assess the degree of alignment of protein structures, which cannot be monitored by pure localization. Here we demonstrate that by adding polarization control to phase control in the Fourier plane of the imaging path, all parameters can be determined unambiguously from single molecules: 3D spatial position, 3D orientation and wobbling or dithering angle. The method, applied to fluorescent labels attached to single actin filaments, provides precisions within tens of nanometers in position and few degrees in direction.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Optimal birefringence distributions for star test polarimetry

    astro-ph.IM 2019-08 conditional novelty 7.0 of 10

    The optimal birefringence distribution for star test polarimetry, minimizing PSF size while encoding polarization, is nearly the same as that of a three-point stress-engineered optic.

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