Microscopy, Confocal
"Microscopy, Confocal" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
A light microscopic technique in which only a small spot is illuminated and observed at a time. An image is constructed through point-by-point scanning of the field in this manner. Light sources may be conventional or laser, and fluorescence or transmitted observations are possible.
Descriptor ID |
D018613
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MeSH Number(s) |
E01.370.350.515.395 E05.595.395
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Concept/Terms |
Microscopy, Confocal- Microscopy, Confocal
- Confocal Microscopy
- Confocal Microscopies
- Microscopies, Confocal
Laser Scanning Microscopy- Laser Scanning Microscopy
- Laser Scanning Microscopies
- Microscopies, Laser Scanning
- Microscopy, Laser Scanning
- Scanning Microscopies, Laser
- Scanning Microscopy, Laser
Laser Microscopy- Laser Microscopy
- Laser Microscopies
- Microscopies, Laser
- Microscopy, Laser
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Below are MeSH descriptors whose meaning is more general than "Microscopy, Confocal".
Below are MeSH descriptors whose meaning is more specific than "Microscopy, Confocal".
This graph shows the total number of publications written about "Microscopy, Confocal" by people in this website by year, and whether "Microscopy, Confocal" was a major or minor topic of these publications.
To see the data from this visualization as text, click here.
Year | Major Topic | Minor Topic | Total |
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1995 | 0 | 2 | 2 | 1996 | 0 | 2 | 2 | 1997 | 0 | 3 | 3 | 1998 | 1 | 1 | 2 | 1999 | 1 | 2 | 3 | 2000 | 2 | 4 | 6 | 2001 | 0 | 4 | 4 | 2002 | 0 | 2 | 2 | 2003 | 0 | 4 | 4 | 2004 | 0 | 3 | 3 | 2005 | 1 | 7 | 8 | 2006 | 0 | 4 | 4 | 2007 | 1 | 8 | 9 | 2008 | 0 | 4 | 4 | 2009 | 0 | 3 | 3 | 2010 | 0 | 9 | 9 | 2011 | 1 | 5 | 6 | 2012 | 0 | 1 | 1 | 2013 | 1 | 4 | 5 | 2014 | 0 | 5 | 5 | 2015 | 0 | 3 | 3 | 2016 | 0 | 1 | 1 | 2019 | 0 | 1 | 1 |
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Below are the most recent publications written about "Microscopy, Confocal" by people in Profiles.
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Advances in the diagnosis and surveillance of Barrett's esophagus (with videos). Gastrointest Endosc. 2019 09; 90(3):325-334.
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Boldizsar F, Tarjanyi O, Olasz K, Hegyi A, Mikecz K, Glant TT, Rauch TA. FTY720 (Gilenya) treatment prevents spontaneous autoimmune myocarditis and dilated cardiomyopathy in transgenic HLA-DQ8-BALB/c mice. Cardiovasc Pathol. 2016 Sep-Oct; 25(5):353-61.
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Duan L, Perez RE, Davaadelger B, Dedkova EN, Blatter LA, Maki CG. p53-regulated autophagy is controlled by glycolysis and determines cell fate. Oncotarget. 2015 Sep 15; 6(27):23135-56.
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Gatto RG, Chu Y, Ye AQ, Price SD, Tavassoli E, Buenaventura A, Brady ST, Magin RL, Kordower JH, Morfini GA. Analysis of YFP(J16)-R6/2 reporter mice and postmortem brains reveals early pathology and increased vulnerability of callosal axons in Huntington's disease. Hum Mol Genet. 2015 Sep 15; 24(18):5285-98.
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Lee HW, Khan SQ, Faridi MH, Wei C, Tardi NJ, Altintas MM, Elshabrawy HA, Mangos S, Quick KL, Sever S, Reiser J, Gupta V. A Podocyte-Based Automated Screening Assay Identifies Protective Small Molecules. J Am Soc Nephrol. 2015 Nov; 26(11):2741-52.
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Joy A, Al-Ghoul KJ. Basal membrane complex architecture is disrupted during posterior subcapsular cataract formation in Royal College of Surgeons rats. Mol Vis. 2014; 20:1777-95.
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Yan J, Thomson JK, Wu X, Zhao W, Pollard AE, Ai X. Novel methods of automated quantification of gap junction distribution and interstitial collagen quantity from animal and human atrial tissue sections. PLoS One. 2014; 9(8):e104357.
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Jiao J, Dragomir AC, Kocabayoglu P, Rahman AH, Chow A, Hashimoto D, Leboeuf M, Kraus T, Moran T, Carrasco-Avino G, Friedman SL, Merad M, Aloman C. Central role of conventional dendritic cells in regulation of bone marrow release and survival of neutrophils. J Immunol. 2014 Apr 01; 192(7):3374-82.
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Kistler AD, Caicedo A, Abdulreda MH, Faul C, Kerjaschki D, Berggren PO, Reiser J, Fornoni A. In vivo imaging of kidney glomeruli transplanted into the anterior chamber of the mouse eye. Sci Rep. 2014 Jan 27; 4:3872.
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Chen W, Wang R, Chen B, Zhong X, Kong H, Bai Y, Zhou Q, Xie C, Zhang J, Guo A, Tian X, Jones PP, O'Mara ML, Liu Y, Mi T, Zhang L, Bolstad J, Semeniuk L, Cheng H, Zhang J, Chen J, Tieleman DP, Gillis AM, Duff HJ, Fill M, Song LS, Chen SR. The ryanodine receptor store-sensing gate controls Ca2+ waves and Ca2+-triggered arrhythmias. Nat Med. 2014 Feb; 20(2):184-92.
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