altering cardiomyocyte fate
plasticity, which is emerging as an effective strategy to compensate
VALIEV, R.Z.,
PROKOFIEV, E.A.,
KAZARINOV, N.A.,
RAAB, G.I.,
MINASOV, T.B.,
STRÁSKÝ, J. (2020) is their nanostructuring by using severe
plastic deformation (SPD) techniques. For medical devices, such properties include
Minasov, B.S.,
Biktasheva, E.M.,
Valeev, M.M.,
Yakupov, R.R.,
Minasov, T.B.,
Mavlyutov, T.R. (2022) to the
plastic properties of the selected material for the reconstruction of the soft tissues of the foot
accordingly. Isolated fundoplication without
plastic of esophageal opening was performed in 180 patients
are presented that prove this hypothesis, as well as refuting the key role of synaptic
plasticity in memory
Rezyapova, Luiza R.,
Safargalina, Zarema A.,
Usmanov, Emil I.,
Valiev, Roman R.,
Minasov, Timur B.,
Valiev, Ruslan Z. (2024) using severe
plastic deformation processing. Nanostructured Grade 4 Ti has a very high strength, and its