M
Maria A. Surmeneva
Researcher at Tomsk Polytechnic University
Publications - 133
Citations - 3481
Maria A. Surmeneva is an academic researcher from Tomsk Polytechnic University. The author has contributed to research in topics: Coating & Sputter deposition. The author has an hindex of 25, co-authored 109 publications receiving 2350 citations. Previous affiliations of Maria A. Surmeneva include Perm National Research Polytechnic University.
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Significance of calcium phosphate coatings for the enhancement of new bone osteogenesis – A review ☆
TL;DR: A systematic analysis of results available from in vitro, in vivo and clinical trials on the effects of biocompatible calcium phosphate (CaP) coatings is presented and the future research and use of these devices is discussed.
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Fabrication of multiple-layered gradient cellular metal scaffold via electron beam melting for segmental bone reconstruction
Maria A. Surmeneva,Roman A. Surmenev,E. Chudinova,Andrei Koptioug,Mikhail S. Tkachev,Svetlana Nikolaevna Gorodzha,Lars-Erik Rännar +6 more
TL;DR: In this article, triple and double-layered mesh Ti-based alloy scaffolds were successfully fabricated using electron beam melting (EBM) using different 3D arch shapes. And they were used to construct cylindrical scaffolds.
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3D biodegradable scaffolds of polycaprolactone with silicate-containing hydroxyapatite microparticles for bone tissue engineering: high-resolution tomography and in vitro study.
Svetlana Shkarina,Svetlana Shkarina,Roman Shkarin,Venera Weinhardt,Venera Weinhardt,Elizaveta V. Melnik,Gabriele Vacun,Petra J. Kluger,Kateryna Loza,Matthias Epple,Sergei I. Ivlev,Tilo Baumbach,Maria A. Surmeneva,Roman A. Surmenev +13 more
TL;DR: It is expected that novel hybrid scaffolds of PCL will improve tissue ingrowth in vivo due to hydrophilic SiHA microparticles in combination with randomly oriented and well-aligned PCL microfibers, which mimic the structure of extracellular matrix of bone tissue.
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A comparison study between electrospun polycaprolactone and piezoelectric poly(3-hydroxybutyrate-co-3-hydroxyvalerate) scaffolds for bone tissue engineering.
Svetlana Nikolaevna Gorodzha,Albert R. Muslimov,Dina Sergeevna Syromotina,Alexander S. Timin,Nikolai Yu. Tcvetkov,Kirill V. Lepik,Aleksandra V. Petrova,Maria A. Surmeneva,Dmitry A. Gorin,Gleb B. Sukhorukov,Roman A. Surmenev +10 more
TL;DR: In vitro study on hMSC adhesion, viability, spreading and osteogenic differentiation showed that the PHBV-SiHA scaffolds had the largest adhesion and differentiation abilities compared with other scaffolds.
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The influence of the deposition parameters on the properties of an rf-magnetron-deposited nanostructured calcium phosphate coating and a possible growth mechanism
Roman A. Surmenev,Maria A. Surmeneva,K. E. Evdokimov,V. F. Pichugin,Thorsten Peitsch,Matthias Epple +5 more
TL;DR: In this article, the authors reported the deposition of a biocompatible calcium phosphate coating on the surface of materials for biomedical implants by rf-magnetron sputtering and established the deposition parameters to prepare either stoichiometric crystalline hydroxyapatite or amorphous calcium phosphate with a molar Ca/P ratio from 1.53 to 3.88.