Search Results - "Chernyshev, A.V."

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  1. 1

    Fluorescence‐free flow cytometry for measurement of shape index distribution of resting, partially activated, and fully activated platelets by Litvinenko, A.L., Moskalensky, A.E., Karmadonova, N.A., Nekrasov, V.M., Strokotov, D.I., Konokhova, A.I., Yurkin, M.A., Pokushalov, E.A., Chernyshev, A.V., Maltsev, V.P.

    Published in Cytometry. Part A (01-11-2016)
    “…Whereas commercially available hematological analyzers measure volume of individual platelets, angle‐resolved light‐scattering provides unique ability to…”
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    Journal Article
  2. 2

    Biphotochromic and ionochromic benzoxazolyl-substituted spirobipyrans by Chernyshev, A.V., Solov’eva, E.V., Voloshin, N.A., Demidov, O.P., Gaeva, E.B., Nepomnyashiy, A.S., Metelitsa, A.V.

    “…[Display omitted] •Benzoxazole substituted spirobipyrans have been synthesized.•Spirobipyrans exhibit dual positive photochromism.•Benzoxazole substituted…”
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  3. 3

    Anion effect on crystal structure of Zn-complexes of spironaphthopyran and their chromogenic properties in solution by Chernyshev, A.V., Tkachev, V.V., Rostovtseva, I.A., Lazarenko, V.A., Guda, A.A., Shilov, G.V., Utenyshev, A.N., Solov'eva, E.V., Gaeva, E.B., Voloshin, N.A., Aldoshin, S.M., Metelitsa, A.V.

    Published in Polyhedron (15-07-2023)
    “…The stability of the complexes decreases with an increase in the coordinating ability of the counterion, which is expressed in a decrease in the spectral shift…”
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    Tetrodotoxin and its analogues profile in nemertean species from the sea of Japan by Vlasenko, A.E., Velansky, P.V., Chernyshev, A.V., Kuznetsov, V.G., Magarlamov, T. Yu

    Published in Toxicon (Oxford) (15-12-2018)
    “…For the first time search for tetrodotoxin (TTX) and its analogues in the extracts of nemerteans using HPLC-MS/MS was performed. TTX analogues were detected in…”
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  6. 6

    Hydrogen bond effect of the photoswitching of a spiropyran dyad by Chernyshev, A.V., Rostovtseva, I.A., Burov, O.N., Popov, L.D., Morozov, A.N., Kletskii, M.E., Bulanov, A.O., Gaeva, E.B., Metelitsa, A.V.

    “…[Display omitted] •Novel spiropyran–fluorescein dyad with an azomethine spacer was obtained.•Spiropyran–fluorescein dyad exhibits positive…”
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  7. 7

    Specific features of the atomic structure of metallic layers of multilayered by Domashevskaya, E.P, Guda, A.A, Chernyshev, A.V, Sitnikov, V.G

    Published in Physics of the solid state (01-02-2017)
    “…Multilayered nanostructures (MN) were prepared by ion-beam successive sputtering from two targets, one of which was a metallic…”
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  8. 8

    Chromogenic systems based on 8-(1,3-benzoxazol-2-yl) substituted spirobenzopyrans undergoing ion modulated photochromic rearrangements by Chernyshev, A.V., Metelitsa, A.V., Rostovtseva, I.A., Voloshin, N.A., Solov’eva, E.V., Gaeva, E.B., Minkin, V.I.

    “…[Display omitted] •Spiropyran complexes undergo negative photochromism.•Negative photochromism is quantitatively characterized by the photokinetic…”
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  9. 9

    Ion-depended photochromism of oxadiazole containing spiropyrans by Chernyshev, A.V., Voloshin, N.A., Solov’eva, E.V., Gaeva, E.B., Zubavichus, Ya. V., Lazarenko, V.A., Vlasenko, V.G., Khrustalev, V.N., Metelitsa, A.V.

    “…[Display omitted] •New 8-oxadiazole spiropyrans undergo positive photochromism.•8-oxadiazole spiropyrans form complexes with transition metal ions.•Complexes…”
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  10. 10
  11. 11

    Experimental and theoretical insight into the complexation behavior of spironaphthopyrans bearing o-positioning benzazole moiety by Rostovtseva, I.A., Chernyshev, A.V., Tkachev, V.V., Dorogan, I.V., Voloshin, N.A., Solov'eva, E.V., Metelitsa, A.V., Gaeva, E.B., Aldoshin, S.M., Minkin, V.I.

    Published in Journal of molecular structure (05-10-2017)
    “…Metal coordination by spironaphthopyran derived merocyanines bearing benzazol substituents has been studied by means of experimental and theoretical methods…”
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  12. 12

    Advanced consumable‐free morphological analysis of intact red blood cells by a compact scanning flow cytometer by Gilev, K.V., Yastrebova, E.S., Strokotov, D.I., Yurkin, M.A., Karmadonova, N.A., Chernyshev, A.V., Lomivorotov, V.V., Maltsev, V.P.

    Published in Cytometry. Part A (01-09-2017)
    “…Whereas modern automated blood cell analyzers measure the volume of individual red blood cells (RBCs), leading to four RBC indices (mean corpuscular volume,…”
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  13. 13

    Specific features of the atomic structure of metallic layers of multilayered [.sub.40] nanostructures with different interlayers by Domashevskaya, E.P, Guda, A.A, Chernyshev, A.V, Sitnikov, V.G

    Published in Physics of the solid state (01-02-2017)
    “…Multilayered nanostructures (MN) were prepared by ion-beam successive sputtering from two targets, one of which was a metallic…”
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    Journal Article
  14. 14

    Dynamic quantification of antigen molecules with flow cytometry by Moskalensky, A.E., Chernyshev, A.V., Yurkin, M.A., Nekrasov, V.M., Polshchitsin, A.A., Parks, D.R., Moore, W.A., Filatenkov, A., Maltsev, V.P., Orlova, D.Y.

    Published in Journal of immunological methods (01-12-2015)
    “…Traditional methods for estimating the number of expressed molecules, based on the detection of target antigens bound with fluorescently labeled antibodies,…”
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  15. 15

    Interatomic interactions at interfaces of multilayered nanostructures [ .sub.32] by Domashevskaya, E.P, Terekhov, V.A, Turishchev, S. Yu, Spirin, D.E, Chernyshev, A.V, Kalinin, Yu. E, Sitnikov, A.V

    Published in Physics of the solid state (01-05-2016)
    “…The interatomic interaction and phase formation at interfaces between the metallic layers [Co.sub.45][Fe.sub.45][Zr.sub.10] and nonmetallic interlayers of…”
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  16. 16

    Dynamic quantification of antigen molecules with flow cytometry by Moskalensky, A.E., Chernyshev, A.V., Yurkin, M.A., Nekrasov, V.M., Polshchitsin, A.A., Parks, D.R., Moore, W.A., Filatenkov, A., Maltsev, V.P., Orlova, D.Y.

    Published in Journal of immunological methods (01-03-2015)
    “…Traditional methods for estimating the number of expressed molecules, based on the detection of target antigens bound with fluorescently labeled antibodies,…”
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    Journal Article
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    Synthesis and Complex Formation of Rhodamine-Substituted Spirobenzopyranindolines by Solov’eva, E. V., Rostovtseva, I. A., Shepelenko, K. E., Voloshin, N. A., Chernyshev, A. V., Borodkin, G. S., Trofimova, N. S., Metelitsa, A. V., Minkin, V. I.

    Published in Russian journal of general chemistry (01-05-2018)
    “…Novel spirobenzopyranindolines containing a rhodamine fragment linked to a benzopyran fragment with an aminomethylene spacer were synthesized by the reaction…”
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  19. 19

    X-ray photoelectron spectroscopy investigations of atomic interactions in surface layers of multilayered nanostructures [.sub.32] by Domashevskaya, E.P, Chernyshev, A.V, Turishchev, S. Yu, Kalinin, Yu. E, Sitnikov, A.V, Marchenko, D.E

    Published in Physics of the solid state (01-11-2014)
    “…The interatomic interaction and chemical state of elements in amorphous multilayered [([Co.sub.45][Fe.sub.45][Zr.sub.10]/a-Si).sub.40] and…”
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  20. 20

    Statistical parsimony networks and species assemblages in cephalothricid nemerteans (Nemertea) by Chen, Hai-Xia, Strand, Malin, Norenburg, Jon, Sun, Shichun, Kajihara, Hiroshi, Chernyshev, A.V., Maslakova, S, Sundberg, Per

    Published in PloS one (2010)
    “…BACKGROUND: It has been suggested that statistical parsimony network analysis could be used to get an indication of species represented in a set of nucleotide…”
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