Bazunova, M.V.,
Lazdin, R.Yu.,
Elinson, M.R.,
Sharafutdinova, L.A.,
Mustakimov, R.A.,
Kulish, E.I. (2022) in the overall
surface roughness and a sharp drop in the elastic modulus of the films. The stabilizing impact
Parfenova, Lyudmila V.,
Galimshina, Zulfiya R.,
Gil’fanova, Guzel U.,
Alibaeva, Eliza I.,
Danilko, Ksenia V.,
Aubakirova, Veta R.,
Farrakhov, Ruzil G.,
Parfenov, Evgeny V.,
Valiev, Ruslan Z. (2022) of the titanium
surface. Therefore, the aim of this work was to develop approaches to control the biological
Parfenova, 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) derivatives of a natural polymer matrix – hyaluronic acid, for modification of the
surface of nanostructured
by the interplay between
surface anchoring and liquid crystal elasticity. Mueller matrix spectroscopic ellipsometry
Spasov, AA,
Kucheryavenko, AF,
Khaliullin, FA,
Gurova, NA,
Sirotenko, VS,
Samorodov, AV,
Gaidukova, KA,
Pavlov, VN (2022) to the carotid artery wall by
surface application of 50% ferric chloride (III) solution in rats without
KHALIULLIN, F.A.,
KLEN, E.E.,
PAVLOV, V.N.,
SAMORODOV, A.V.,
SHEPILOVA, S.O.,
MAKAROVA, N.N.,
NURLANOVA, S.N.,
ABZALILOV, T.N. (2022) toxicity, local irritation)
and acceptable bioavailability (in terms of the topological polar
surface area).