Search Results - "Nekrasov, Vyacheslav M"

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  1. 1

    Ultraviolet light scattering scanning flow cytometry in the characterization of submicron microparticles by Strokotov, Dmitry I, Nekrasov, Vyacheslav M, Gilev, Konstantin V, Karpenko, Andrey A, Maltsev, Valeri P

    Published in Cytometry. Part A (01-09-2023)
    “…Ultraviolet lasers are commonly used in flow cytometry to excite fluorochrome molecules with subsequent measurement of the specific fluorescence of individual…”
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    Journal Article
  2. 2

    Method for the simulation of blood platelet shape and its evolution during activation by Moskalensky, Alexander E, Yurkin, Maxim A, Muliukov, Artem R, Litvinenko, Alena L, Nekrasov, Vyacheslav M, Chernyshev, Andrei V, Maltsev, Valeri P

    Published in PLoS computational biology (01-03-2018)
    “…We present a simple physically based quantitative model of blood platelet shape and its evolution during agonist-induced activation. The model is based on the…”
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    Journal Article
  3. 3

    Erythrocyte lysis in isotonic solution of ammonium chloride: Theoretical modeling and experimental verification by Chernyshev, Andrey V., Tarasov, Peter A., Semianov, Konstantin A., Nekrasov, Vyacheslav M., Hoekstra, Alfons G., Maltsev, Valeri P.

    Published in Journal of theoretical biology (07-03-2008)
    “…A mathematical model of erythrocyte lysis in isotonic solution of ammonium chloride is presented in frames of a statistical approach. The model is used to…”
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    Journal Article
  4. 4

    Kinetic titration method in flow cytometry for quantification of cell receptors by Khalo, Irina V., Karpenko, Andrei A., Kozyreva, Viktoriya S., Shilova, Anna N., Abubakirova, Olga A., Strokotov, Dmitry I., Nekrasov, Vyacheslav M., Maltsev, Valeri P., Chernyshev, Andrei V.

    Published in Journal of immunological methods (01-10-2023)
    “…For the quantitative determination of cell receptors by fluorescence flow cytometry, we proposed a new method, which takes into account the reaction kinetics…”
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    Journal Article
  5. 5
  6. 6

    A light scatter based model relating erythrocyte vesiculation to lifetime in circulation by Yastrebova, Ekaterina S, Gisich, Alla V, Nekrasov, Vyacheslav M, Gilev, Konstantin V, Strokotov, Dmitry I, Chernyshev, Andrei V, Karpenko, Andrey A, Maltsev, Valeri P

    Published in Cytometry. Part A (01-09-2023)
    “…Methods for measuring erythrocyte age distribution are not available as a simple analytical tool. Most of them utilize the fluorescence or radioactive isotopes…”
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    Journal Article
  7. 7

    Spectral approach to recognize spherical particles among non-spherical ones by angle-resolved light scattering by Yastrebova, Ekaterina S., Dolgikh, Ivan, Gilev, Konstantin V., Vakhrusheva, Irina V., Liz, Elizaveta, Litvinenko, Alena L., Nekrasov, Vyacheslav M., Strokotov, Dmitry I., Karpenko, Andrei A., Maltsev, Valeri P.

    Published in Optics and laser technology (01-03-2021)
    “…•Polarizer-free and single-PMT setup to recognize single spheres from light scattering.•Optical vector-invariant constructed from angular-spectrum of light…”
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    Journal Article
  8. 8

    Accurate measurement of volume and shape of resting and activated blood platelets from light scattering by Moskalensky, Alexander E, Yurkin, Maxim A, Konokhova, Anastasiya I, Strokotov, Dmitry I, Nekrasov, Vyacheslav M, Chernyshev, Andrei V, Tsvetovskaya, Galina A, Chikova, Elena D, Maltsev, Valeri P

    Published in Journal of biomedical optics (01-01-2013)
    “…We introduce a novel approach for determination of volume and shape of individual blood platelets modeled as an oblate spheroid from angle-resolved light…”
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    Journal Article
  9. 9

    Polarized light‐scattering profile—advanced characterization of nonspherical particles with scanning flow cytometry by Strokotov, Dmitry I., Moskalensky, Alexander E., Nekrasov, Vyacheslav M., Maltsev, Valeri P.

    Published in Cytometry. Part A (01-07-2011)
    “…We instrumentally, theoretically, and experimentally demonstrate a new approach for characterization of nonspherical individual particles from light…”
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    Journal Article
  10. 10

    Brownian aggregation rate of colloid particles with several active sites by Nekrasov, Vyacheslav M, Polshchitsin, Alexey A, Yurkin, Maxim A, Yakovleva, Galina E, Maltsev, Valeri P, Chernyshev, Andrei V

    Published in The Journal of chemical physics (14-08-2014)
    “…We theoretically analyze the aggregation kinetics of colloid particles with several active sites. Such particles (so-called "patchy particles") are well known…”
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    Journal Article
  11. 11

    Application of RBF Neural Networks for Solving the Inverse Light Scattering Problem of Platelets by Aleksandrov, Evgeniy A., Gilev, Konstantin V., Litvinenko, Alena L., Nekrasov, Vyacheslav M., Strokotov, Dmitry I., Maltsev, Valeri P.

    “…In this paper, the possibility of using Radial Basis Function (RBF) neural networks to solve the inverse problem of light scattering for platelets is…”
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    Conference Proceeding
  12. 12

    Particle aggregation and the grinding limit in high energy ball mill by Matveeva, Anna G., Skripkina, Tatiana S., Nekrasov, Vyacheslav M., Nikiforova, Uliana E., Bukhtoyarov, Vladimir A., Bychkov, Aleksey, Lomovskiy, Igor

    Published in Powder technology (15-01-2025)
    “…Dust aggregates — clusters of individual particles — are formed during mechanochemical processing of brown coal in a planetary ball mill. The aggregate…”
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    Journal Article
  13. 13

    Determining blood platelet morphology modelled by a superellipsoid from the solution of the inverse light-scattering problem by Litvinenko, Alena L., Nekrasov, Vyacheslav M., Gilev, Konstantin V., Alexandrov, Evgeniy A., Strokotov, Dmitry I., Maltsev, Valeri P., Karpenko, Andrey A., Yastrebova, Ekaterina S.

    Published in Optics and laser technology (01-09-2024)
    “…•The superellipsoid model is statistically superior to the oblate spheroid model for 60% of platelets.•Precision of recognized platelet fractions is increased…”
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    Journal Article
  14. 14

    Mathematical Modeling the Kinetics of Cell Distribution in the Process of Ligand–Receptor Binding by SUROVTSEV, IVAN V, RAZUMOV, IVAN A, NEKRASOV, VYACHESLAV M, SHVALOV, ALEXANDER N, SOINI, JUHANI T, MALTSEV, VALERI P, PETROV, ALEXANDER K, LOKTEV, VALERI B, CHERNYSHEV, ANDREI V

    Published in Journal of theoretical biology (07-10-2000)
    “…A statistical approach is presented to model the kinetics of cell distribution in the process of ligand–receptor binding on cell surfaces. The approach takes…”
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    Journal Article
  15. 15

    Kinetic turbidimetry of patchy colloids aggregation: Latex particles immunoagglutination by Polshchitsin, Alexey A., Nekrasov, Vyacheslav M., Zakovryashin, Valentin S., Yakovleva, Galina E., Maltsev, Valeri P., Yurkin, Maxim A., Chernyshev, Andrei V.

    “…[Display omitted] •A new analytical expression for the treatment of the kinetic turbidimetry of patchy colloids aggregation was derived and…”
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    Journal Article
  16. 16

    Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer by Surovtsev, Ivan V., Yurkin, Maxim A., Shvalov, Alexander N., Nekrasov, Vyacheslav M., Sivolobova, Galina F., Grazhdantseva, Antonina A., Maltsev, Valeri P., Chernyshev, Andrei V.

    Published in Colloids and surfaces, B, Biointerfaces (01-11-2003)
    “…The use of a scanning flow cytometer (SFC) to study the evolution of monomers, dimers and higher multimers of latex particles at the initial stage of the…”
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    Journal Article
  17. 17

    A physical model of blood platelets shape and its effect on light scattering by Moskalensky, Alexander E., Litvinenko, Alyona L., Nekrasov, Vyacheslav M., Yurkin, Maxim A.

    “…Quantitative description of blood platelet shape and its dramatic change during activation is necessary for the correct interpretation of light-scattering…”
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    Conference Proceeding
  18. 18

    Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer by Surovtsev, Ivan V, Yurkin, Maxim A, Shvalov, Alexander N, Nekrasov, Vyacheslav M, Sivolobova, Galina F, Grazhdantseva, Antonina A, Maltsev, Valeri P, Chernyshev, Andrey V

    Published 29-07-2008
    “…Colloid.Surf.B 32(3):245-255 (2003) The use of a scanning flow cytometer (SFC) to study the evolution of monomers, dimers and higher multimers of latex…”
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    Journal Article