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Items: 1 to 20 of 165

1.

Condensed mitotic chromosome structure at nanometer resolution using PALM and EGFP- histones.

Matsuda A, Shao L, Boulanger J, Kervrann C, Carlton PM, Kner P, Agard D, Sedat JW.

PLoS One. 2010 Sep 15;5(9):e12768. doi: 10.1371/journal.pone.0012768.

2.

Evidence of activity-specific, radial organization of mitotic chromosomes in Drosophila.

Strukov YG, Sural TH, Kuroda MI, Sedat JW.

PLoS Biol. 2011 Jan 11;9(1):e1000574. doi: 10.1371/journal.pbio.1000574.

3.

Super-resolution imaging of the bacterial division machinery.

Buss J, Coltharp C, Xiao J.

J Vis Exp. 2013 Jan 21;(71). pii: 50048. doi: 10.3791/50048.

4.

Super-resolution imaging of neuronal dense-core vesicles.

Scalettar BA, Shaver D, Kaech S, Lochner JE.

J Vis Exp. 2014 Jul 2;(89). doi: 10.3791/51394.

5.

Quantitative analysis of photoactivated localization microscopy (PALM) datasets using pair-correlation analysis.

Sengupta P, Lippincott-Schwartz J.

Bioessays. 2012 May;34(5):396-405. doi: 10.1002/bies.201200022.

6.

Photoactivated Localization Microscopy with Bimolecular Fluorescence Complementation (BiFC-PALM).

Nickerson A, Huang T, Lin LJ, Nan X.

J Vis Exp. 2015 Dec 22;(106):e53154. doi: 10.3791/53154.

PMID:
26779930
7.

Direct stochastic optical reconstruction microscopy with standard fluorescent probes.

van de Linde S, Löschberger A, Klein T, Heidbreder M, Wolter S, Heilemann M, Sauer M.

Nat Protoc. 2011 Jun 16;6(7):991-1009. doi: 10.1038/nprot.2011.336.

PMID:
21720313
8.

Three-dimensional photoactivated localization microscopy with genetically expressed probes.

Temprine K, York AG, Shroff H.

Methods Mol Biol. 2015;1251:231-61. doi: 10.1007/978-1-4939-2080-8_13.

9.

Bleaching/blinking assisted localization microscopy for superresolution imaging using standard fluorescent molecules.

Burnette DT, Sengupta P, Dai Y, Lippincott-Schwartz J, Kachar B.

Proc Natl Acad Sci U S A. 2011 Dec 27;108(52):21081-6. doi: 10.1073/pnas.1117430109.

10.

Real-time computation of subdiffraction-resolution fluorescence images.

Wolter S, Schüttpelz M, Tscherepanow M, VAN DE Linde S, Heilemann M, Sauer M.

J Microsc. 2010 Jan;237(1):12-22. doi: 10.1111/j.1365-2818.2009.03287.x.

11.

Super-resolution imaging of the cytokinetic Z ring in live bacteria using fast 3D-structured illumination microscopy (f3D-SIM).

Turnbull L, Strauss MP, Liew AT, Monahan LG, Whitchurch CB, Harry EJ.

J Vis Exp. 2014 Sep 29;(91):51469. doi: 10.3791/51469.

12.

Recent advances in super-resolution fluorescence imaging and its applications in biology.

Han R, Li Z, Fan Y, Jiang Y.

J Genet Genomics. 2013 Dec 20;40(12):583-95. doi: 10.1016/j.jgg.2013.11.003. Review.

PMID:
24377865
13.

Photoactivated Localization Microscopy (PALM) of adhesion complexes.

Shroff H, White H, Betzig E.

Curr Protoc Cell Biol. 2013 Mar;Chapter 4:Unit4.21. doi: 10.1002/0471143030.cb0421s58.

14.

Photoactivatable fluorescent proteins for super-resolution microscopy.

Ishitsuka Y, Nienhaus K, Nienhaus GU.

Methods Mol Biol. 2014;1148:239-60. doi: 10.1007/978-1-4939-0470-9_16.

PMID:
24718806
15.

Photoactivated localization microscopy (PALM) of adhesion complexes.

Shroff H, White H, Betzig E.

Curr Protoc Cell Biol. 2008 Dec;Chapter 4:Unit 4.21. doi: 10.1002/0471143030.cb0421s41.

16.
17.

3D reconstruction of high-resolution STED microscope images.

Punge A, Rizzoli SO, Jahn R, Wildanger JD, Meyer L, Schönle A, Kastrup L, Hell SW.

Microsc Res Tech. 2008 Sep;71(9):644-50. doi: 10.1002/jemt.20602.

PMID:
18512740
18.

A user's guide to localization-based super-resolution fluorescence imaging.

Dempsey GT.

Methods Cell Biol. 2013;114:561-92. doi: 10.1016/B978-0-12-407761-4.00024-5.

PMID:
23931523
19.

Imaging cellular ultrastructure by PALM, iPALM, and correlative iPALM-EM.

Shtengel G, Wang Y, Zhang Z, Goh WI, Hess HF, Kanchanawong P.

Methods Cell Biol. 2014;123:273-94. doi: 10.1016/B978-0-12-420138-5.00015-X.

PMID:
24974033
20.

Multilayer three-dimensional super resolution imaging of thick biological samples.

Vaziri A, Tang J, Shroff H, Shank CV.

Proc Natl Acad Sci U S A. 2008 Dec 23;105(51):20221-6. doi: 10.1073/pnas.0810636105.

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