Optimal model-based sensorless adaptive optics for epifluorescence microscopy.

We report on a universal sample-independent sensorless adaptive optics method, based on modal optimization of the second moment of the fluorescence emission from a point-like excitation. Our method employs a sample-independent precalibration, performed only once for the particular system, to establi...

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Main Authors: Paolo Pozzi, Oleg Soloviev, Dean Wilding, Gleb Vdovin, Michel Verhaegen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5860766?pdf=render
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author Paolo Pozzi
Oleg Soloviev
Dean Wilding
Gleb Vdovin
Michel Verhaegen
author_facet Paolo Pozzi
Oleg Soloviev
Dean Wilding
Gleb Vdovin
Michel Verhaegen
author_sort Paolo Pozzi
collection DOAJ
description We report on a universal sample-independent sensorless adaptive optics method, based on modal optimization of the second moment of the fluorescence emission from a point-like excitation. Our method employs a sample-independent precalibration, performed only once for the particular system, to establish the direct relation between the image quality and the aberration. The method is potentially applicable to any form of microscopy with epifluorescence detection, including the practically important case of incoherent fluorescence emission from a three dimensional object, through minor hardware modifications. We have applied the technique successfully to a widefield epifluorescence microscope and to a multiaperture confocal microscope.
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spelling doaj.art-4d366ac29756479aa0cb7f302e691b9e2022-12-21T19:58:40ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01133e019452310.1371/journal.pone.0194523Optimal model-based sensorless adaptive optics for epifluorescence microscopy.Paolo PozziOleg SolovievDean WildingGleb VdovinMichel VerhaegenWe report on a universal sample-independent sensorless adaptive optics method, based on modal optimization of the second moment of the fluorescence emission from a point-like excitation. Our method employs a sample-independent precalibration, performed only once for the particular system, to establish the direct relation between the image quality and the aberration. The method is potentially applicable to any form of microscopy with epifluorescence detection, including the practically important case of incoherent fluorescence emission from a three dimensional object, through minor hardware modifications. We have applied the technique successfully to a widefield epifluorescence microscope and to a multiaperture confocal microscope.http://europepmc.org/articles/PMC5860766?pdf=render
spellingShingle Paolo Pozzi
Oleg Soloviev
Dean Wilding
Gleb Vdovin
Michel Verhaegen
Optimal model-based sensorless adaptive optics for epifluorescence microscopy.
PLoS ONE
title Optimal model-based sensorless adaptive optics for epifluorescence microscopy.
title_full Optimal model-based sensorless adaptive optics for epifluorescence microscopy.
title_fullStr Optimal model-based sensorless adaptive optics for epifluorescence microscopy.
title_full_unstemmed Optimal model-based sensorless adaptive optics for epifluorescence microscopy.
title_short Optimal model-based sensorless adaptive optics for epifluorescence microscopy.
title_sort optimal model based sensorless adaptive optics for epifluorescence microscopy
url http://europepmc.org/articles/PMC5860766?pdf=render
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AT olegsoloviev optimalmodelbasedsensorlessadaptiveopticsforepifluorescencemicroscopy
AT deanwilding optimalmodelbasedsensorlessadaptiveopticsforepifluorescencemicroscopy
AT glebvdovin optimalmodelbasedsensorlessadaptiveopticsforepifluorescencemicroscopy
AT michelverhaegen optimalmodelbasedsensorlessadaptiveopticsforepifluorescencemicroscopy