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Items: 1 to 20 of 109

1.

A new method for exact three-dimensional reconstructions of diatom frustules.

Friedrichs L, Maier M, Hamm C.

J Microsc. 2012 Nov;248(2):208-17. doi: 10.1111/j.1365-2818.2012.03664.x.

2.

Three-dimensional surface reconstruction of diatomaceous frustules.

Chen X, Ostadi H, Jiang K.

Anal Biochem. 2010 Aug;403(1-2):63-6. doi: 10.1016/j.ab.2010.04.003. Epub 2010 Apr 9.

PMID:
20382100
3.

A simple method for SEM examination of sectioned diatom frustules.

Massé G, Poulin M, Belt ST, Robert JM, Barreau A, Rincé Y, Rowland SJ.

J Microsc. 2001 Oct;204(Pt 1):87-92.

4.

Complex gold nanostructures derived by templating from diatom frustules.

Losic D, Mitchell JG, Voelcker NH.

Chem Commun (Camb). 2005 Oct 21;(39):4905-7. Epub 2005 Sep 7.

PMID:
16205794
5.
6.

Preparation of photocatalyst using diatom frustules by liquid phase deposition method.

Umemura K, Gao Y, Nishikawa T.

J Nanosci Nanotechnol. 2010 Aug;10(8):4883-8.

PMID:
21125823
7.

Three-dimensional ultrasound biomicroscopy, environmental and conventional scanning electron microscopy investigations of the human zonula ciliaris for numerical modelling of accommodation.

Stachs O, Martin H, Behrend D, Schmitz KP, Guthoff R.

Graefes Arch Clin Exp Ophthalmol. 2006 Jul;244(7):836-44. Epub 2005 Oct 5.

PMID:
16205936
8.

Pore architecture of diatom frustules: potential nanostructured membranes for molecular and particle separations.

Losic D, Rosengarten G, Mitchell JG, Voelcker NH.

J Nanosci Nanotechnol. 2006 Apr;6(4):982-9.

PMID:
16736754
9.

An integrated approach for probing the structure and mechanical properties of diatoms: Toward engineered nanotemplates.

Moreno MD, Ma K, Schoenung J, Dávila LP.

Acta Biomater. 2015 Oct;25:313-24. doi: 10.1016/j.actbio.2015.07.028. Epub 2015 Jul 18.

PMID:
26196080
10.
11.

A posteriori quasi-sectioning of the three-dimensional reconstructions of scanning holographic microscopy.

Indebetouw G.

J Opt Soc Am A Opt Image Sci Vis. 2006 Oct;23(10):2657-61.

PMID:
16985551
12.

Morphology and physical-chemical properties of baked nanoporous frustules.

Umemura K, Noguchi Y, Ichinose T, Hirose Y, Mayama S.

J Nanosci Nanotechnol. 2010 Aug;10(8):5220-4.

PMID:
21125874
13.

Three-dimensional visualization of insect morphology using confocal laser scanning microscopy.

Klaus AV, Kulasekera VL, Schawaroch V.

J Microsc. 2003 Nov;212(Pt 2):107-21.

14.

Anaglyph of retinal stem cells and developing axons: selective volume enhancement in microscopy images.

Carri NG, Bermúdez SN, Fiore L, Di Napoli J, Scicolone G.

Anat Rec (Hoboken). 2014 Apr;297(4):770-80. doi: 10.1002/ar.22889. Epub 2014 Feb 10.

15.

New techniques for imaging, digitization and analysis of three-dimensional neural morphology on multiple scales.

Wearne SL, Rodriguez A, Ehlenberger DB, Rocher AB, Henderson SC, Hof PR.

Neuroscience. 2005;136(3):661-80.

PMID:
16344143
16.

High-fidelity meshes from tissue samples for diffusion MRI simulations.

Panagiotaki E, Hall MG, Zhang H, Siow B, Lythgoe MF, Alexander DC.

Med Image Comput Comput Assist Interv. 2010;13(Pt 2):404-11.

PMID:
20879341
17.

Herbicide effects on freshwater benthic diatoms: induction of nucleus alterations and silica cell wall abnormalities.

Debenest T, Silvestre J, Coste M, Delmas F, Pinelli E.

Aquat Toxicol. 2008 Jun 2;88(1):88-94. doi: 10.1016/j.aquatox.2008.03.011. Epub 2008 Mar 26.

PMID:
18453009
18.

Three-dimensional integral imaging of micro-objects.

Jang JS, Javidi B.

Opt Lett. 2004 Jun 1;29(11):1230-2.

PMID:
15209256
19.

SHERPA: an image segmentation and outline feature extraction tool for diatoms and other objects.

Kloster M, Kauer G, Beszteri B.

BMC Bioinformatics. 2014 Jun 25;15:218. doi: 10.1186/1471-2105-15-218.

20.

Diatom elemental and morphological changes in response to iron limitation: a brief review with potential paleoceanographic applications.

Marchetti A, Cassar N.

Geobiology. 2009 Sep;7(4):419-31. doi: 10.1111/j.1472-4669.2009.00207.x. Epub 2009 Jul 29. Review.

PMID:
19659798
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