KHAYBULLINA, R.R.,
GERASIMOVA, L.P.,
KABIROVA, M.F.,
RAKHMATULLINA, R.Z.,
TKACHENKO, E.D.,
GALETTI, K. (2019) .05) from baseline values. At the same time, the decrease in bioelectric
activity of temporal muscle at rest
AKHMADIEV, N.S.,
AKHMETOVA, V.R.,
IBRAGIMOV, A.G.,
GALIMOVA, A.M.,
GALIMOVA, R.A.,
AGLETDINOV, E.F.,
KATAEV, V.A.,
KHAIRULLINA, V.R. (2019) to the
active sites of an enzymatic oxidase system. To obtain a deeper insight into biochemical aspects
KALINICHEV, A.A.,
KUROCHKIN, M.A.,
KOLOMYTSEV, A.Y.,
KOLESNIKOV, I.E.,
KHASBIEVA, R.S.,
KOLESNIKOV, E.Y.,
LÄHDERANTA, E. (2019) /2) and non-thermally (2H11/2 and 4F9/2) coupled Er3+
levels. The ratiometric techniques provide the thermal
The antimicrobial and antifungal
activities of maleopimaric acid (MPA) and several of its 2- and 6
weperformed a pilot study focused on the impact of cortisol treatmenton the lipid peroxidation
levels