PARFENOV, E.V.,
MUKAEVA, V.R.,
FARRAKHOV, R.G.,
PARFENOVA, L.V.,
LUKINA, E.S.,
DYAKONOV, G.S.,
VALIEV, R.Z.,
DANILKO, K.V. (2019) This research follows a biomimetic approach for
implant surface design, and it concerns surface
PARFENOVA, L.V.,
LUKINA, E.S.,
GALIMSHINA, Z.R.,
GIL'FANOVA, G.U.,
MUKAEVA, V.R.,
FARRAKHOV, R.G.,
PARFENOV, E.V.,
DANILKO, K.V.,
DYAKONOV, G.S. (2020) architecture and composition of the surface layer in order to control the biocompatibility of
implants made
Rezyapova, Luiza R.,
Safargalina, Zarema A.,
Usmanov, Emil I.,
Valiev, Roman R.,
Minasov, Timur B.,
Valiev, Ruslan Z. (2024) Titanium and its alloys are popular materials for medical application, particularly in
implantParfenova, L.V.,
Galimshina, Z.R.,
Gil'fanova, G.U.,
Alibaeva, E.I.,
Danilko, K.V.,
Pashkova, T.M.,
Kartashova, O.L.,
Farrakhov, R.G.,
Mukaeva, V.R.,
Parfenov, E.V.,
Nagumothu, R.,
Valiev, R.Z. (2022) . Organic molecules were deposited to the PEO-modified
titanium surface by physicochemical adsorption from
to eliminate
mesh implants during full-grown infection process. The Republican clinical hospital (Russia