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Switchable resolution in soft x-ray tomography of single cells

The diversity of living cells, in both size and internal complexity, calls for imaging methods with adaptable spatial resolution. Soft x-ray tomography (SXT) is a three-dimensional imaging technique ideally suited to visualizing and quantifying the internal organization of single cells of varying si...

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Autores principales: Weinhardt, Venera, Chen, Jian-Hua, Ekman, Axel A., Guo, Jessica, Remesh, Soumya G., Hammel, Michal, McDermott, Gerry, Chao, Weilun, Oh, Sharon, Le Gros, Mark A., Larabell, Carolyn A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6980406/
https://www.ncbi.nlm.nih.gov/pubmed/31978064
http://dx.doi.org/10.1371/journal.pone.0227601
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author Weinhardt, Venera
Chen, Jian-Hua
Ekman, Axel A.
Guo, Jessica
Remesh, Soumya G.
Hammel, Michal
McDermott, Gerry
Chao, Weilun
Oh, Sharon
Le Gros, Mark A.
Larabell, Carolyn A.
author_facet Weinhardt, Venera
Chen, Jian-Hua
Ekman, Axel A.
Guo, Jessica
Remesh, Soumya G.
Hammel, Michal
McDermott, Gerry
Chao, Weilun
Oh, Sharon
Le Gros, Mark A.
Larabell, Carolyn A.
author_sort Weinhardt, Venera
collection PubMed
description The diversity of living cells, in both size and internal complexity, calls for imaging methods with adaptable spatial resolution. Soft x-ray tomography (SXT) is a three-dimensional imaging technique ideally suited to visualizing and quantifying the internal organization of single cells of varying sizes in a near-native state. The achievable resolution of the soft x-ray microscope is largely determined by the objective lens, but switching between objectives is extremely time-consuming and typically undertaken only during microscope maintenance procedures. Since the resolution of the optic is inversely proportional to the depth of focus, an optic capable of imaging the thickest cells is routinely selected. This unnecessarily limits the achievable resolution in smaller cells and eliminates the ability to obtain high-resolution images of regions of interest in larger cells. Here, we describe developments to overcome this shortfall and allow selection of microscope optics best suited to the specimen characteristics and data requirements. We demonstrate that switchable objective capability advances the flexibility of SXT to enable imaging cells ranging in size from bacteria to yeast and mammalian cells without physically modifying the microscope, and we demonstrate the use of this technology to image the same specimen with both optics.
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spelling pubmed-69804062020-02-04 Switchable resolution in soft x-ray tomography of single cells Weinhardt, Venera Chen, Jian-Hua Ekman, Axel A. Guo, Jessica Remesh, Soumya G. Hammel, Michal McDermott, Gerry Chao, Weilun Oh, Sharon Le Gros, Mark A. Larabell, Carolyn A. PLoS One Research Article The diversity of living cells, in both size and internal complexity, calls for imaging methods with adaptable spatial resolution. Soft x-ray tomography (SXT) is a three-dimensional imaging technique ideally suited to visualizing and quantifying the internal organization of single cells of varying sizes in a near-native state. The achievable resolution of the soft x-ray microscope is largely determined by the objective lens, but switching between objectives is extremely time-consuming and typically undertaken only during microscope maintenance procedures. Since the resolution of the optic is inversely proportional to the depth of focus, an optic capable of imaging the thickest cells is routinely selected. This unnecessarily limits the achievable resolution in smaller cells and eliminates the ability to obtain high-resolution images of regions of interest in larger cells. Here, we describe developments to overcome this shortfall and allow selection of microscope optics best suited to the specimen characteristics and data requirements. We demonstrate that switchable objective capability advances the flexibility of SXT to enable imaging cells ranging in size from bacteria to yeast and mammalian cells without physically modifying the microscope, and we demonstrate the use of this technology to image the same specimen with both optics. Public Library of Science 2020-01-24 /pmc/articles/PMC6980406/ /pubmed/31978064 http://dx.doi.org/10.1371/journal.pone.0227601 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Weinhardt, Venera
Chen, Jian-Hua
Ekman, Axel A.
Guo, Jessica
Remesh, Soumya G.
Hammel, Michal
McDermott, Gerry
Chao, Weilun
Oh, Sharon
Le Gros, Mark A.
Larabell, Carolyn A.
Switchable resolution in soft x-ray tomography of single cells
title Switchable resolution in soft x-ray tomography of single cells
title_full Switchable resolution in soft x-ray tomography of single cells
title_fullStr Switchable resolution in soft x-ray tomography of single cells
title_full_unstemmed Switchable resolution in soft x-ray tomography of single cells
title_short Switchable resolution in soft x-ray tomography of single cells
title_sort switchable resolution in soft x-ray tomography of single cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6980406/
https://www.ncbi.nlm.nih.gov/pubmed/31978064
http://dx.doi.org/10.1371/journal.pone.0227601
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