Search Results - (Author, Cooperation:D. Ovchinnikov)
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1E. Arner ; C. O. Daub ; K. Vitting-Seerup ; R. Andersson ; B. Lilje ; F. Drablos ; A. Lennartsson ; M. Ronnerblad ; O. Hrydziuszko ; M. Vitezic ; T. C. Freeman ; A. M. Alhendi ; P. Arner ; R. Axton ; J. K. Baillie ; A. Beckhouse ; B. Bodega ; J. Briggs ; F. Brombacher ; M. Davis ; M. Detmar ; A. Ehrlund ; M. Endoh ; A. Eslami ; M. Fagiolini ; L. Fairbairn ; G. J. Faulkner ; C. Ferrai ; M. E. Fisher ; L. Forrester ; D. Goldowitz ; R. Guler ; T. Ha ; M. Hara ; M. Herlyn ; T. Ikawa ; C. Kai ; H. Kawamoto ; L. M. Khachigian ; S. P. Klinken ; S. Kojima ; H. Koseki ; S. Klein ; N. Mejhert ; K. Miyaguchi ; Y. Mizuno ; M. Morimoto ; K. J. Morris ; C. Mummery ; Y. Nakachi ; S. Ogishima ; M. Okada-Hatakeyama ; Y. Okazaki ; V. Orlando ; D. Ovchinnikov ; R. Passier ; M. Patrikakis ; A. Pombo ; X. Y. Qin ; S. Roy ; H. Sato ; S. Savvi ; A. Saxena ; A. Schwegmann ; D. Sugiyama ; R. Swoboda ; H. Tanaka ; A. Tomoiu ; L. N. Winteringham ; E. Wolvetang ; C. Yanagi-Mizuochi ; M. Yoneda ; S. Zabierowski ; P. Zhang ; I. Abugessaisa ; N. Bertin ; A. D. Diehl ; S. Fukuda ; M. Furuno ; J. Harshbarger ; A. Hasegawa ; F. Hori ; S. Ishikawa-Kato ; Y. Ishizu ; M. Itoh ; T. Kawashima ; M. Kojima ; N. Kondo ; M. Lizio ; T. F. Meehan ; C. J. Mungall ; M. Murata ; H. Nishiyori-Sueki ; S. Sahin ; S. Nagao-Sato ; J. Severin ; M. J. de Hoon ; J. Kawai ; T. Kasukawa ; T. Lassmann ; H. Suzuki ; H. Kawaji ; K. M. Summers ; C. Wells ; D. A. Hume ; A. R. Forrest ; A. Sandelin ; P. Carninci ; Y. Hayashizaki
American Association for the Advancement of Science (AAAS)
Published 2015Staff ViewPublication Date: 2015-02-14Publisher: American Association for the Advancement of Science (AAAS)Print ISSN: 0036-8075Electronic ISSN: 1095-9203Topics: BiologyChemistry and PharmacologyComputer ScienceMedicineNatural Sciences in GeneralPhysicsKeywords: Animals ; Binding Sites ; Cattle ; Cell Differentiation/*genetics ; Dogs ; *Enhancer Elements, Genetic ; *Gene Expression Regulation, Developmental ; Mice ; RNA, Messenger/genetics/metabolism ; Rats ; Stem Cells/*cytology/metabolism ; Transcription Factors/*metabolism ; *Transcription, GeneticPublished by: -
2Bukharaev, A. A. ; Kukovitski, E. F. ; Ovchinnikov, D. V. ; Sainov, N. A. ; Nurgazizov, N. I.
Springer
Published 1997Staff ViewISSN: 1063-7834Source: Springer Online Journal Archives 1860-2000Topics: PhysicsNotes: Abstract The method of scanning force microscopy (SFM) is used to study catalytic nickel nanoparticles deposited on a substrate of quartz glass by decomposition of carbon nanotubes. The SFM images so obtained were computer processed using an original numerical deconvolution algorithm which allowed us to determine the actual dimensions and shape of the nanoparticles. Nonoverlapping particles with diameters from 20 to 200 nm were recorded. Analysis of the SFM images revealed that the shape of the nickel particles is nearly spherical, which is in good agreement with transmission electron microscopy data.Type of Medium: Electronic ResourceURL: -
3Bukharaev, A. A. ; Ovchinnikov, D. V. ; Nurgazizov, N. I. ; Kukovitskii, E. F. ; Klaiber, M. ; Wiesendanger, R.
Springer
Published 1998Staff ViewISSN: 1063-7834Source: Springer Online Journal Archives 1860-2000Topics: PhysicsNotes: Abstract Isolated Ni nanoparticles were studied in situ by atomic and magnetic force microscopy in the presence of an additional external field up to 300 Oe. By comparing topographic and magnetic images, and also by computer modeling of magnetic images, it was established that particles smaller than 100 nm are single-domain and easily undergo magnetic reversal in the direction of the applied external magnetic field. For large magnetic particles, the external magnetic field enhances the magnetization uniformity and the direction of total magnetization of these particles is determined by their shape anisotropy. Characteristics of the magnetic images and magnetic reversal of particles larger than 150 nm are attributed to the formation of a vortex magnetization structure in these particles.Type of Medium: Electronic ResourceURL: -
4Bukharaev, A. A. ; Bukharaeva, A. A. ; Nurgazizov, N. I. ; Ovchinnikov, D. V.
Springer
Published 1998Staff ViewISSN: 1090-6533Source: Springer Online Journal Archives 1860-2000Topics: PhysicsNotes: Abstract First results are reported of in situ visualization of the chemical etching of P+-ion implanted SiO2-Si structures in an aqueous HF solution using an atomic force microscope. The rates of SiO2 etching were determined and the kinetics of the photostimulated chemical etching of Si were investigated.Type of Medium: Electronic ResourceURL: