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Multi-plane remote refocussing epifluorescence microscopy to image dynamic Ca2+ events

Lawton, P.F.; Buckley, C.; Saunter, C.D.; Wilson, C.; Corbett, A.D.; Salter, P.S.; McCarron, J.G.; Girkin, J.M.

Multi-plane remote refocussing epifluorescence microscopy to image dynamic Ca2+ events Thumbnail


Authors

C. Buckley

C.D. Saunter

C. Wilson

A.D. Corbett

P.S. Salter

J.G. McCarron



Abstract

Rapid imaging of multiple focal planes without sample movement may be achieved through remote refocusing, where imaging is carried out in a plane conjugate to the sample plane. The technique is ideally suited to studying the endothelial and smooth muscle cell layers of blood vessels. These are intrinsically linked through rapid communication and must be separately imaged at a sufficiently high frame rate in order to understand this biologically crucial interaction. We have designed and implemented an epifluoresence-based remote refocussing imaging system that can image each layer at up to 20fps using different dyes and excitation light for each layer, without the requirement for optically sectioning microscopy. A novel triggering system is used to activate the appropriate laser and image acquisition at each plane of interest. Using this method, we are able to achieve axial plane separations down to 15 ????m, with a mean lateral stability of ≤ 0.32 ????m displacement using a 60x, 1.4NA imaging objective and a 60x, 0.7NA reimaging objective. The system allows us to image and quantify endothelial cell activity and smooth muscle cell activity at a high framerate with excellent lateral and good axial resolution without requiring complex beam scanning confocal microscopes, delivering a cost effective solution for imaging two planes rapidly. We have successfully imaged and analysed Ca2+ activity of the endothelial cell layer independently of the smooth muscle layer for several minutes.

Citation

Lawton, P., Buckley, C., Saunter, C., Wilson, C., Corbett, A., Salter, P., …Girkin, J. (2019). Multi-plane remote refocussing epifluorescence microscopy to image dynamic Ca2+ events. Biomedical Optics Express, 10(11), 5611-5624. https://doi.org/10.1364/boe.10.005611

Journal Article Type Article
Acceptance Date Sep 12, 2019
Online Publication Date Oct 10, 2019
Publication Date Nov 1, 2019
Deposit Date Sep 17, 2019
Publicly Available Date Oct 11, 2019
Journal Biomedical Optics Express
Publisher Optica
Peer Reviewed Peer Reviewed
Volume 10
Issue 11
Pages 5611-5624
DOI https://doi.org/10.1364/boe.10.005611

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Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/

Copyright Statement
Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI.





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