Search Results - "Yevdokimov, P. V."

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  1. 1

    Stereolithographic 3D Printing of Bioceramic Scaffolds of a Given Shape and Architecture for Bone Tissue Regeneration by Putlyaev, V. I., Yevdokimov, P. V., Mamonov, S. A., Zorin, V. N., Klimashina, E. S., Rodin, I. A., Safronova, T. V., Garshev, A. V.

    “…—A standard series of ceramic scaffolds for bone tissue regeneration with Kelvin architecture was developed, providing matrix water permeability not less than…”
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    Journal Article
  2. 2

    Hybrid Tricalcium Phosphate/Hydrogel Constructs Functionalized with an Antitumor Drug for Bone Tissue Regeneration by Karalkin, P. A., Sergeyeva, N. S., Sviridova, I. K., Kirsanova, V. A., Akhmedova, S. A., Shansky, Ya. D., Leontyev, N. V., Zuyev, D. M., Klimashina, E. S., Yevdokimov, P. V., Putlyaev, V. I.

    “…Hybrid materials designed for the regeneration of bone defects and consisting of a resorbable ceramic base (tricalcium phosphate, TCP) coated with a layer of…”
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  3. 3

    Calcium pyrophosphate powder for production of bioceramics synthesized from pyrophosphoric acid and calcium acetate by Safronova, T. V., Kurbatova, S. A., Shatalova, T. B., Knotko, A. V., Yevdokimov, P. V., Putlyayev, V. I.

    “…Hydrated amorphous calcium pyrophosphate powder was synthesized from an aqueous solution containing pyrophosphoric acid and calcium acetate with the addition…”
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  4. 4

    Ceramics based on calcium phosphate powder synthesized from calcium saccharate and ammonium hydrophosphate by Safronova, T. V., Kazakova, G. K., Yevdokimov, P. V., Shatalova, T. B., Knotko, A. V., Korotkova, A. V., Putlyayev, V. I.

    Published in Inorganic materials : applied research (01-07-2016)
    “…A microporous ceramic with a pore size ranging from 1 to 6 μm and a relative density up to 56% was obtained from the calcium phosphate powder synthesized from…”
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    Journal Article