URAKOV, A.L.,
MUSTAFIN, I.G.,
NABIULLINA, R.M.,
BASHIROVA, L.I.,
MOCHALOV, K.S.,
SAMORODOV, A.V.,
KHALIULLIN, F.A.,
LIPATOV, D.O.,
KORUNAS, V.I.,
KHALIMOV, A.R. (2020) activity, and physical–
mechanical properties of formed clots were determined from thromboelastograms
РЕЗУЛЬТАТЫ СТЕНДОВЫХ ИСПЫТАНИЙ СИСТЕМЫ КОСТЬ-ИМПЛАНТАТ-КОСТЬ В УСЛОВИЯХ СТАНДАРТНОГО ОСТЕОСИНТЕЗА ПРИ ПЕРЕЛОМАХ ПРОКСИМАЛЬНОГО ОТДЕЛА БЕДРАМинасов, Б.Ш.,
Ханин, М.Ю.,
Якупов, Р.Р.,
Минасов, Т.Б.,
Minasov, B.Sh.,
Khanin, M.Yu.,
Yakupov, R.R.,
Minasov, T.B. (2010) , in the reconstruction nail and in the gamma nail in the range from 37.5 to 51.8% relative to the
mechanical strength
D’yakonov, V.A.,
Dzhemileva, L.U.,
Tuktarova, R.A.,
Ishmukhametova, S.R.,
Yunusbaeva, M.M.,
Ramazanov, I.R.,
Dzhemilev, U.M. (2017) for the synthesized acids. A probable
mechanism of topoisomerase I inhibition was hypothesized on the basis
Khusnutdinova, E.K.,
Dzhemileva, L.U.,
Lobov, S.L.,
Kuznetzov, D.U.,
Nazirova, A.G.,
Nurgalina, E.M.,
Barashkov, N.A.,
Fedorova, S.A. (2017) from Bashkortostan Republic was performed. The
mechanism of accumulation of non-syndromic sensorineural
D’yakonov, Vladimir A.,
Dzhemileva, Lilya U.,
Makarov, Aleksey A.,
Mulyukova, Alfiya R.,
Baev, Dmitry S.,
Khusnutdinova, Elza K.,
Tolstikova, Tatiana G.,
Dzhemilev, Usein M. (2016) topoisomerase I and II was studied. Resorting to the data of molecular docking, a probable
mechanismASSOCIATIVE AND INITIATIVE CONNECTIONS OF THE PATHOGENIC AND OPPORTUNISTIC MICROFLORA IN THE DEVELOPMENT OF INFLAMMATORY DISEASES OF THE ORAL MUCOSA IN YOUNG PEOPLEUsmanova, I.N.,
Gerasimova, L.P.,
Tuigunov, M.M.,
Galimova, I.A.,
Kusnarizanova, R.F.,
Usmanov, I.R. (2018) clinical and laboratory methods of investigation make it possible to determine the triggering
mechanisms 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