Approximations of MINFLUX Localization Precision with Background

Fuente: arXiv
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Main Authors: Marin, Zach, Ries, Jonas
Format: Preprint
Published: 2024
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author Marin, Zach
Ries, Jonas
author_facet Marin, Zach
Ries, Jonas
contents MINFLUX is an emerging super-resolution technology that measures the position of single fluorophores with nanometer precision using fewer photons than any other fluorescence imaging or tracking technique. Here, we derive simple and instructive analytical equations for MINFLUX localization precision with a special focus on background photons. A fluorescence background, either arising from an imperfect zero of the MINFLUX excitation point spread function (PSF) or from auto- or out-of-focus fluorescence, ultimately limits the resolution achievable with MINFLUX. Building on previous work, we try to improve our understanding of the influence of background, especially when it is unknown, through a new set of expressions for the localization precision, based on an explicit background term instead of signal-to-background ratio. We use these equations to generate an intuitive understanding of how fluorescence background affects MINFLUX measurements and illustrate that: - The precision of an emitter position estimate depends on the gradient of its excitation profile. - Knowledge of the fluorescence background, obtained during post-processing of MINFLUX traces or through separate measurements, provides a better localization precision than in the case of unknown background. - In diffraction-limited systems, localization with a PSF that features a near-zero minimum outperforms localization with a maximum. We also present an analytical expression for the localization precision in orbital tracking, which we use for comparison to MINFLUX.
format Preprint
id arxiv_https___arxiv_org_abs_2410_12427
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Approximations of MINFLUX Localization Precision with Background
Marin, Zach
Ries, Jonas
Optics
Biological Physics
MINFLUX is an emerging super-resolution technology that measures the position of single fluorophores with nanometer precision using fewer photons than any other fluorescence imaging or tracking technique. Here, we derive simple and instructive analytical equations for MINFLUX localization precision with a special focus on background photons. A fluorescence background, either arising from an imperfect zero of the MINFLUX excitation point spread function (PSF) or from auto- or out-of-focus fluorescence, ultimately limits the resolution achievable with MINFLUX. Building on previous work, we try to improve our understanding of the influence of background, especially when it is unknown, through a new set of expressions for the localization precision, based on an explicit background term instead of signal-to-background ratio. We use these equations to generate an intuitive understanding of how fluorescence background affects MINFLUX measurements and illustrate that: - The precision of an emitter position estimate depends on the gradient of its excitation profile. - Knowledge of the fluorescence background, obtained during post-processing of MINFLUX traces or through separate measurements, provides a better localization precision than in the case of unknown background. - In diffraction-limited systems, localization with a PSF that features a near-zero minimum outperforms localization with a maximum. We also present an analytical expression for the localization precision in orbital tracking, which we use for comparison to MINFLUX.
title Approximations of MINFLUX Localization Precision with Background
topic Optics
Biological Physics
url https://arxiv.org/abs/2410.12427