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10.1101/pdb.top067918

http://scihub22266oqcxt.onion/10.1101/pdb.top067918
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C4799658!4799658!22301660
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suck abstract from ncbi


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pmid22301660      Cold+Spring+Harb+Protoc 2012 ; 2012 (2): 141-9
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  • Colocalization of Fluorescent Probes: Accurate and Precise Registration with Nanometer Resolution #MMPMID22301660
  • Churchman LS; Spudich JA
  • Cold Spring Harb Protoc 2012[Feb]; 2012 (2): 141-9 PMID22301660show ga
  • Colocalization of fluorescent probes is commonly used in cell biology to discern the proximity of two proteins in the cell. Considering that the resolution limit of optical microscopy is on the order of 250 nm, there has not been a need for high-resolution colocalization techniques. However, with the advent of higher resolution techniques for cell biology and single-molecule biophysics, colocalization must also improve. For diffraction-limited applications, a geometric transformation (i.e., translation, scaling, and rotation) is typically applied to one color channel to align it with the other; however, to achieve high-resolution colocalization, this is not sufficient. Single-molecule high-resolution colocalization (SHREC) of single probes uses the local weighted mean transformation to achieve a colocalization resolution of at least 10 nm. This article describes the process of collecting a calibration data set of fiducials and the appropriate analysis to determine the transformation for colocalization.
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