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PMID: 8632447 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Dispersion, aberration and deconvolution in multi-wavelength fluorescence images.

Journal of microscopy ·Vol. 182 ·No. Pt 1 ·1996-04-00 ·Pages 50-60

Scalettar BA, Swedlow JR, Sedat JW, Agard DA

Abstract

The wavelength dependence of the incoherent point spread function in a wide-field microscope was investigated experimentally. Dispersion in the sample and optics can lead to significant changes in the point spread function as wavelength is varied over the range commonly used in fluorescence microscopy. For a given sample, optical conditions can generally be optimized to produce a point spread function largely free of spherical aberration at a given wavelength. Unfortunately, deviations in wavelength from this value will result in spherically aberrated point spread functions. Therefore, when multiple fluorophores are used to localize different components in the same sample, the image of the distribution of at least one of the fluorophores will be spherically aberrated. This aberration causes a loss of intensity and resolution, thereby complicating the localization and analysis of multiple components in a multi-wavelength image. We show that optimal resolution can be restored to a spherically aberrated image by constrained, iterative deconvolution, as long as the spherical aberration in the point spread function used for deconvolution matches the aberration in the image reasonably well. The success of this method is essentially independent of the initial degree of spherical aberration in the image. Deconvolution of many biological images can be achieved by collecting a small library of spherically aberrated and unaberrated point spread functions, and then choosing a point spread function appropriate for deconvolving each image. The co-localization and relative intensities of multiple components can then be accurately studied in a multi-wavelength image.

MeSH Terms
Algorithms Image Enhancement Image Processing, Computer-Assisted Microscopy, Fluorescence Refractometry
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Scalettar B A
Howard Hughes Medical Institute, University of California, San Francisco 94143-0448, USA.
Swedlow J R
Sedat J W
Agard D A
Article Info
Journal
Journal of microscopy
Abbr.
J Microsc
ISSN
0022-2720
Published
1996-04-00
Pages
50-60
Language
English
Region
England
NLM ID
0204522
Subset
IM
Grants
NIGMS NIH HHS · GM-25101 · United States
NIGMS NIH HHS · GM-31627 · United States
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