Gilyazova, I.,
Timasheva, Ya.,
Karunas, A.,
Kazantseva, A.,
Sufianov, A.,
Mashkin, A.,
Korytina, G.,
Wang, Ya.,
Gareev, I.,
Khusnutdinova, E. (2023) knowledge of mechanisms,
risk factors, genetics and neurologic impairments in COVID-19. In addition, we
Valeeva, E.T.,
Galimova, R.R.,
Distanova, A.A.,
Suleymanova, I.F.,
Suleymanova, I.F.,
Boyarinova, N.B.,
Salavatova, L.Kh.,
Isaeva, S.M. (2023) industry involve combined exposure to several harmful occupational
factors. Major harmful occupational
Xu, Dongxiao,
Guo, Jiaojiao,
Zheng, Bingjie,
Wu, Qiaowei,
Gareev, Ilgiz,
Beylerli, Ozal,
Beilerli, Aferin,
Shi, Huaizhang (2023) , and there is no consensus on the
risk factors associated with it. Aim: The aim of this study was to determine the
riskMukhtarova, Liliya A.,
Fedorova, Yulia Yu.,
Karunas, Aleksandra S.,
Prokofyeva, Darya S.,
Nurgalieva, Alfia Kh.,
Khusnutdinova, Elza K.,
Zagidullin, Shamil Z. (2023) and prognostic value of internal and external
risk factors for exacerbation and death from BA. Methods
Timasheva, Y.,
Balkhiyarova, Z.,
Avzaletdinova, D.,
Rassoleeva, I.,
Morugova, T.V.,
Korytina, G.,
Prokopenko, I.,
Kochetova, O. (2023) , alone and in combination with other
risk factors such as age and sex. Using logistic regression analysis
Kazantseva, Anastasiya,
Davydova, Yuliya,
Enikeeva, Renata,
Mustafin, Rustam,
Malykh, Sergey,
Lobaskova, Marina,
Kanapin, Alexander,
Prokopenko, Inga,
Khusnutdinova, Elza (2023) The
risk of depression could be evaluated through its multifactorial nature using the polygenic
. The aim of this work is to investigate the genetic
risk factors for the development of schizophrenia
Nazarova, L.Sh.,
Daukaev, R.A.,
Musabirov, D.E.,
Karimov, D.O.,
Yakhina, M.R.,
Kudoyarov, E.R.,
Bakirov, A.B. (2023) BODY MASS INDEX OF SCHOOLCHILDREN UNDER EXPOSURE TO ENDOGENOUS AND EXOGENOUS
RISK FACTORS (ON