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) that Ti nanostructuring via ECAP-C technique almost two-fold improves its
mechanical strength; also
Paar, V.,
Jirak, P.,
Larbig, R.,
Zagidullin, N.S.,
Brandt, M.C.,
Lichtenauer, M.,
Hoppe, U.C.,
Motloch, L.J. (2019) and health care costs. Despite ongoing research efforts, the understanding of the molecular
mechanismsWANG, K.,
LIU, H.,
LIU, J.,
WANG, X.,
TENG, L.,
ZHANG, J.,
CHEN, X.,
WANG, N.,
ZHONG, Y.,
HOU, X.,
JIANG, H.,
ZHANG, X.,
ZHAO, S.,
LIU, Y.,
YAO, Y.,
WANG, J.,
QU, Y.,
PENG, F.,
BEYLERLI, O.,
LIAO, X. (2019) , the molecular
mechanisms underlying metabolic reprogramming induced by methionine deprivation regulates glioma
CHEN, Q.,
HAN, B.,
MENG, X.,
DUAN, C.,
YANG, C.,
WU, Z.,
MAGAFUROV, D.,
ZHAO, S.,
JIANG, C.,
CAI, J.,
SAFIN, S (2019) , the immunosuppressive
mechanisms of GBM has not been thoroughly elucidated to date. We enrolled six microenvironmental
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) Purpose: In order to investigate
mechanisms underlying the hepatoprotective action of S
LIU, Z.,
ZHANG, R.,
CHEN, X.,
YAO, P.,
YAN, T.,
LIU, W.,
YAO, J.,
ZHAO, S.,
SOKHATSKII, A.,
GAREEV, I. (2019) Background
Because of the complex
mechanisms of injury, conventional surgical treatment and early