Search Results - "YURKIN, A. M"

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  1. 1

    High Purity Tungsten (VI) Oxide for Obtaining Promising Laser Materials by Khomyakov, A. V., Mozhevitina, E. N., Zykova, M. P., Yurkin, A. M., Avetisov, I. Kh

    Published in Glass and ceramics (01-05-2021)
    “…A method based on two-stage sublimation purification for obtaining high-purity tungsten (VI) oxide was developed. An impurity analysis of a commercial…”
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    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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  3. 3

    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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    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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  5. 5

    Determination of volume, shape and refractive index of individual blood platelets by Kolesnikova, I.V., Potapov, S.V., Yurkin, M.A., Hoekstra, A.G., Maltsev, V.P., Semyanov, K.A.

    “…Light scattering patterns (LSP) of blood platelets were theoretically and experimentally analyzed. We used spicular spheroids as a model for the platelets with…”
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  6. 6

    Leukemia risk and rate of radiation dose accumulation. Part 2: Comparative analysis of leukocytic indices and dynamics of peripheral blood values in relation to external gamma-exposure dose by S. F. Sosnina, A. M. Yurkin, P. V. Okatenko, S. A. Rogacheva, E. A. Gruzdeva, M. E. Sokolnikov

    Published in Радиационная гигиена (25-06-2020)
    “…The results of a retrospective analysis of leukocytic indices and dynamics of peripheral blood values in relation to external gamma-exposure dose among the…”
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    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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    Journal Article
  8. 8

    Structure and chemical composition of LiB3O5 surfaces by Atuchin, V. V., Kesler, V. G., Lisova, I. A., Pokrovsky, L. D., Pylneva, N. A., Yurkin, A. M.

    Published in Crystal research and technology (1979) (01-10-2003)
    “…The electronic and structural properties of LiB3O5 (LBO) surfaces have been studied by X‐ray photoemission spectroscopy (XPS) and reflectance high‐energy…”
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  9. 9

    The discrete dipole approximation: An overview and recent developments by Yurkin, M.A., Hoekstra, A.G.

    “…We present a review of the discrete dipole approximation (DDA), which is a general method to simulate light scattering by arbitrarily shaped particles. We put…”
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  10. 10

    Controlled nucleation of chrysoberyl crystals in a flux system by Khranenko, G. G., Yurkin, A. M.

    Published in Inorganic materials (01-02-2000)
    “…Ways for controlling spontaneous nucleation and further growth of chrysoberyl crystals in flux systems are proposed. The nucleation and growth are shown to be…”
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    Light scattering by a cube: Accuracy limits of the discrete dipole approximation and the T-matrix method by Yurkin, Maxim A., Kahnert, Michael

    “…We simulated light-scattering by small and wavelength-sized cubes with three largely different values of the refractive index using the discrete dipole…”
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    The discrete dipole approximation for simulation of light scattering by particles much larger than the wavelength by Yurkin, M.A., Maltsev, V.P., Hoekstra, A.G.

    “…In this paper we investigate the capabilities of the discrete dipole approximation (DDA) to simulate scattering from particles that are much larger than the…”
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    A case study on the reciprocity in light scattering computations by Schmidt, Karsten, Yurkin, Maxim A, Kahnert, Michael

    Published in Optics express (08-10-2012)
    “…The fulfillment of the reciprocity by five publicly available scattering programs is investigated for a number of different particles. Reciprocity means that…”
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    Growth and non-linear optical properties of lithium triborate crystals by Pylneva, N.A, Kononova, N.G, Yurkin, A.M, Bazarova, G.G, Danilov, V.I

    Published in Journal of crystal growth (01-03-1999)
    “…The Li 2O–B 2O 3–MoO 3 ternary system was investigated to determine the region of growth of lithium triborate Li 2O·3B 2O 3 (LBO) crystals with good optical…”
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    Laser alexandrite crystals grown by horizontal oriented crystallization technique by Gurov, V.V., Tsvetkov, E.G., Yurkin, A.M.

    Published in Optical materials (01-05-2008)
    “…Comparative studies were performed for alexandrite crystals, Al 2BeO 4:Cr 3+, employed in solid state lasers and grown by the horizontal oriented…”
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    Optimization methods for characterization of single particles from light scattering patterns by M. A. Yurkin, G. V. Dyatlov, K. V. Gilev, V. P. Maltsev

    “…We address the inverse light-scattering problem for particles described by a several-parameters model, when experimental data are given as an angle-resolved…”
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