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Personal profile

Keywords

  • QC Physics
  • Additive technologies
  • Biodegraded metals, composites and polymers
  • Thin Films and Nanotechnology
  • Ion-plasma technologies
  • Biomedical Engineering
  • Biomaterial Synthesis
  • Solid State Physics
  • Thin Films
  • Material Characterization

Fingerprint Dive into the research topics where Maria Alexandrovna Surmeneva is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 21 Similar Profiles
Durapatite Chemical Compounds
Hydroxyapatite Engineering & Materials Science
Coatings Chemical Compounds
Calcium phosphate Engineering & Materials Science
Magnetron sputtering Engineering & Materials Science
Phosphate coatings Engineering & Materials Science
coatings Physics & Astronomy
Titanium Chemical Compounds

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Research Output 2007 2019

3 Citations (Scopus)
calcium phosphates
stem cells
Calcium phosphate
Stem cells
Mesenchymal Stromal Cells

Bone marrow derived mesenchymal stem cell response to the RF magnetron sputter deposited hydroxyapatite coating on AZ91 magnesium alloy

Surmeneva, M. A., Ivanova, A. A., Tian, Q., Pittman, R., Jiang, W., Lin, J., Liu, H. H. & Surmenev, R. A., 1 Jan 2019, In : Materials Chemistry and Physics. 221, p. 89-98 10 p.

Research output: Contribution to journalArticle

bone marrow
stem cells
magnesium alloys
Durapatite
Magnesium alloys
5 Citations (Scopus)

Characterization of biomimetic silicate- and strontium-containing hydroxyapatite microparticles embedded in biodegradable electrospun polycaprolactone scaffolds for bone regeneration

Surmenev, R. A., Shkarina, S., Syromotina, D. S., Melnik, E. V., Shkarin, R., Selezneva, I. I., Ermakov, A. M., Ivlev, S. I., Cecilia, A., Weinhardt, V., Baumbach, T., Rijavec, T., Lapanje, A., Chaikina, M. V. & Surmeneva, M. A., 1 Apr 2019, In : European Polymer Journal. 113, p. 67-77 11 p.

Research output: Contribution to journalArticle

Silicates
Polycaprolactone
biomimetics
Biomimetics
microparticles

Decreased bacterial colonization of additively manufactured Ti6Al4V metallic scaffolds with immobilized silver and calcium phosphate nanoparticles

Surmeneva, M., Lapanje, A., Chudinova, E., Ivanova, A., Koptyug, A., Loza, K., Prymak, O., Epple, M., Ennen-Roth, F., Ulbricht, M., Rijavec, T. & Surmenev, R., 30 Jun 2019, In : Applied Surface Science. 480, p. 822-829 8 p.

Research output: Contribution to journalArticle

Calcium phosphate
Silver
Scaffolds
Electron beam melting
Nanoparticles
calcium phosphates
Strengthening (metal)
Silicon
First-principles
Strengthening

Prizes