IntensityCheck – The light measuring app for microscope performance checks and consistent fluorescence imaging

Quantitative fluorescence imaging is an essential tool in biomedical research. It requires consistent and repeatable conditions such as constant sample illumination. Even on a confocal microscope this can usually only be achieved by using an external laser power meter. By combining low-cost wireless...

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Published inPloS one Vol. 14; no. 3; p. e0214659
Main Author Dormann, Dirk
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 28.03.2019
Public Library of Science (PLoS)
Subjects
Online AccessGet full text
ISSN1932-6203
1932-6203
DOI10.1371/journal.pone.0214659

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Abstract Quantitative fluorescence imaging is an essential tool in biomedical research. It requires consistent and repeatable conditions such as constant sample illumination. Even on a confocal microscope this can usually only be achieved by using an external laser power meter. By combining low-cost wireless Arduino based light sensors with an easy to use Android smartphone app we provide microscope users with a simple but powerful tool to maintain sample illumination for quantitative imaging, for tracking the intensity, stability and alignment of the light sources and for comparing microscope performance.
AbstractList Quantitative fluorescence imaging is an essential tool in biomedical research. It requires consistent and repeatable conditions such as constant sample illumination. Even on a confocal microscope this can usually only be achieved by using an external laser power meter. By combining low-cost wireless Arduino based light sensors with an easy to use Android smartphone app we provide microscope users with a simple but powerful tool to maintain sample illumination for quantitative imaging, for tracking the intensity, stability and alignment of the light sources and for comparing microscope performance.
Quantitative fluorescence imaging is an essential tool in biomedical research. It requires consistent and repeatable conditions such as constant sample illumination. Even on a confocal microscope this can usually only be achieved by using an external laser power meter. By combining low-cost wireless Arduino based light sensors with an easy to use Android smartphone app we provide microscope users with a simple but powerful tool to maintain sample illumination for quantitative imaging, for tracking the intensity, stability and alignment of the light sources and for comparing microscope performance.Quantitative fluorescence imaging is an essential tool in biomedical research. It requires consistent and repeatable conditions such as constant sample illumination. Even on a confocal microscope this can usually only be achieved by using an external laser power meter. By combining low-cost wireless Arduino based light sensors with an easy to use Android smartphone app we provide microscope users with a simple but powerful tool to maintain sample illumination for quantitative imaging, for tracking the intensity, stability and alignment of the light sources and for comparing microscope performance.
Audience Academic
Author Dormann, Dirk
AuthorAffiliation Microscopy facility, MRC London Institute of Medical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom
Arizona State University, UNITED STATES
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– name: Microscopy facility, MRC London Institute of Medical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom
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  orcidid: 0000-0001-6309-7522
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  fullname: Dormann, Dirk
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30921439$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_1093_micmic_ozad014
crossref_primary_10_1364_OE_551456
Cites_doi 10.1371/journal.pone.0079879
10.1007/978-1-60761-847-8_17
10.1016/B978-0-12-420138-5.00007-0
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10.1002/cyto.a.20314
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ContentType Journal Article
Copyright COPYRIGHT 2019 Public Library of Science
2019 Dirk Dormann. This is an open access article distributed under the terms of the Creative Commons Attribution License: http://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
2019 Dirk Dormann 2019 Dirk Dormann
Copyright_xml – notice: COPYRIGHT 2019 Public Library of Science
– notice: 2019 Dirk Dormann. This is an open access article distributed under the terms of the Creative Commons Attribution License: http://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
– notice: 2019 Dirk Dormann 2019 Dirk Dormann
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SubjectTerms 3-D printers
Archives & records
Cellular biology
Engineering and Technology
Fluorescence
Fluorescence microscopy
Illumination
Imaging
Lasers
Light
Light sources
Luminous intensity
Measurement
Medical research
Methods
Methyltestosterone
Microscopes
Microscopy
Microscopy, Fluorescence - instrumentation
Mobile Applications
Physical Sciences
Research and Analysis Methods
Sensors
Smartphones
Time Factors
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Title IntensityCheck – The light measuring app for microscope performance checks and consistent fluorescence imaging
URI https://www.ncbi.nlm.nih.gov/pubmed/30921439
https://www.proquest.com/docview/2200224048
https://www.proquest.com/docview/2200777976
https://pubmed.ncbi.nlm.nih.gov/PMC6438524
https://doaj.org/article/1c24357b182d4f8c92ab4095b25a91f7
http://dx.doi.org/10.1371/journal.pone.0214659
Volume 14
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