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A tessellation-based colocalization analysis approach for single-molecule localization microscopy
by
Beghin, Anne
, Butler, Corey
, Hoess, Philipp
, Giannone, Grégory
, Sibarita, Jean-Baptiste
, Galland, Rémi
, Ries, Jonas
, Levet, Florian
, Julien, Guillaume
, Chazeau, Anaël
in
14/63
/ 631/114/1314
/ 631/114/794
/ Bioinformatics
/ Biotechnology
/ Cellular Biology
/ Computer Science
/ Humanities and Social Sciences
/ Life Sciences
/ Localization
/ Microscopy
/ multidisciplinary
/ Parameter sensitivity
/ Science
/ Science (multidisciplinary)
/ Tessellation
/ Two dimensional analysis
2019
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A tessellation-based colocalization analysis approach for single-molecule localization microscopy
by
Beghin, Anne
, Butler, Corey
, Hoess, Philipp
, Giannone, Grégory
, Sibarita, Jean-Baptiste
, Galland, Rémi
, Ries, Jonas
, Levet, Florian
, Julien, Guillaume
, Chazeau, Anaël
in
14/63
/ 631/114/1314
/ 631/114/794
/ Bioinformatics
/ Biotechnology
/ Cellular Biology
/ Computer Science
/ Humanities and Social Sciences
/ Life Sciences
/ Localization
/ Microscopy
/ multidisciplinary
/ Parameter sensitivity
/ Science
/ Science (multidisciplinary)
/ Tessellation
/ Two dimensional analysis
2019
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A tessellation-based colocalization analysis approach for single-molecule localization microscopy
by
Beghin, Anne
, Butler, Corey
, Hoess, Philipp
, Giannone, Grégory
, Sibarita, Jean-Baptiste
, Galland, Rémi
, Ries, Jonas
, Levet, Florian
, Julien, Guillaume
, Chazeau, Anaël
in
14/63
/ 631/114/1314
/ 631/114/794
/ Bioinformatics
/ Biotechnology
/ Cellular Biology
/ Computer Science
/ Humanities and Social Sciences
/ Life Sciences
/ Localization
/ Microscopy
/ multidisciplinary
/ Parameter sensitivity
/ Science
/ Science (multidisciplinary)
/ Tessellation
/ Two dimensional analysis
2019
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A tessellation-based colocalization analysis approach for single-molecule localization microscopy
Journal Article
A tessellation-based colocalization analysis approach for single-molecule localization microscopy
2019
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Overview
Multicolor single-molecule localization microscopy (λSMLM) is a powerful technique to reveal the relative nanoscale organization and potential colocalization between different molecular species. While several standard analysis methods exist for pixel-based images, λSMLM still lacks such a standard. Moreover, existing methods only work on 2D data and are usually sensitive to the relative molecular organization, a very important parameter to consider in quantitative SMLM. Here, we present an efficient, parameter-free colocalization analysis method for 2D and 3D λSMLM using tessellation analysis. We demonstrate that our method allows for the efficient computation of several popular colocalization estimators directly from molecular coordinates and illustrate its capability to analyze multicolor SMLM data in a robust and efficient manner.
Multicolour single-molecule localization microscopy lacks a standard analysis method. Here Levet et al. introduce Coloc-Tesseler, a parameter-free colocalisation analysis method based on tessellation analysis for the efficient analysis of multicolour SMLM data.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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