"Microscopy, Electron" 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.
Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen.
Descriptor ID |
D008854
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MeSH Number(s) |
E01.370.350.515.402 E05.595.402
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Concept/Terms |
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Below are MeSH descriptors whose meaning is more general than "Microscopy, Electron".
Below are MeSH descriptors whose meaning is more specific than "Microscopy, Electron".
This graph shows the total number of publications written about "Microscopy, Electron" by people in this website by year, and whether "Microscopy, Electron" 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 | 4 | 4 |
1996 | 0 | 2 | 2 |
1997 | 0 | 3 | 3 |
1998 | 0 | 6 | 6 |
1999 | 0 | 6 | 6 |
2000 | 0 | 6 | 6 |
2001 | 0 | 10 | 10 |
2002 | 0 | 14 | 14 |
2003 | 2 | 9 | 11 |
2004 | 1 | 14 | 15 |
2005 | 1 | 10 | 11 |
2006 | 1 | 7 | 8 |
2007 | 0 | 1 | 1 |
2008 | 1 | 4 | 5 |
2009 | 0 | 3 | 3 |
2010 | 1 | 3 | 4 |
2011 | 1 | 3 | 4 |
2012 | 2 | 7 | 9 |
2013 | 0 | 2 | 2 |
2014 | 2 | 5 | 7 |
2015 | 0 | 6 | 6 |
2016 | 0 | 3 | 3 |
2017 | 0 | 2 | 2 |
2018 | 0 | 3 | 3 |
2019 | 0 | 3 | 3 |
2020 | 1 | 1 | 2 |
2021 | 0 | 1 | 1 |
2023 | 0 | 1 | 1 |
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click here.
Below are the most recent publications written about "Microscopy, Electron" by people in Profiles.
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Lucas BA, Grigorieff N. Quantification of gallium cryo-FIB milling damage in biological lamellae. Proc Natl Acad Sci U S A. 2023 06 06; 120(23):e2301852120.
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Pandit AP, Rennke HG, Denker BM. Podocytic Infolding Glomerulopathy in a Patient with Phospholipase A2 Receptor-Positive Membranous Nephropathy and Review of the Literature. Nephron. 2021; 145(5):496-502.
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Tiwari S, Kumar V, Randhawa S, Verma SK. Preparation and characterization of extracellular vesicles. Am J Reprod Immunol. 2021 02; 85(2):e13367.
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Hendricks G, Sena-Esteves M, Gao G. Analysis of Recombinant Adeno-Associated Virus (rAAV) Sample Morphology Using Negative Staining and High-Resolution Electron Microscopy. Cold Spring Harb Protoc. 2020 08 03; 2020(8):095661.
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Ma W, Lee KH, Yang S, Irving TC, Craig R. Lattice arrangement of myosin filaments correlates with fiber type in rat skeletal muscle. J Gen Physiol. 2019 12 02; 151(12):1404-1412.
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Pazour GJ, King SM. Ciliary Doublet Microtubules at Near-Atomic Resolution. Cell. 2019 10 31; 179(4):805-807.
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Yang S, Lee KH, Woodhead JL, Sato O, Ikebe M, Craig R. The central role of the tail in switching off 10S myosin II activity. J Gen Physiol. 2019 09 02; 151(9):1081-1093.
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Vemu A, Szczesna E, Zehr EA, Spector JO, Grigorieff N, Deaconescu AM, Roll-Mecak A. Severing enzymes amplify microtubule arrays through lattice GTP-tubulin incorporation. Science. 2018 08 24; 361(6404).
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Unger MS, Marschallinger J, Kaindl J, Klein B, Johnson M, Khundakar AA, Ro?ner S, Heneka MT, Couillard-Despres S, Rockenstein E, Masliah E, Attems J, Aigner L. Doublecortin expression in CD8+ T-cells and microglia at sites of amyloid-? plaques: A potential role in shaping plaque pathology? Alzheimers Dement. 2018 08; 14(8):1022-1037.
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Lee KH, Sulbar?n G, Yang S, Mun JY, Alamo L, Pinto A, Sato O, Ikebe M, Liu X, Korn ED, Sarsoza F, Bernstein SI, Padr?n R, Craig R. Interacting-heads motif has been conserved as a mechanism of myosin II inhibition since before the origin of animals. Proc Natl Acad Sci U S A. 2018 02 27; 115(9):E1991-E2000.