subsequent periods of prolonged ischemia through the cascade of adaptive responses; however, the
mechanismsYao, JW,
Du, YM,
Liu, JS,
Gareev, I,
Yang, G,
Kang, XH,
Wang, XX,
Beylerli, O,
Chen, X (2021) . Therefore, we reviewed studies on expression of hypoxia-related lncRNAs and relevant molecular
mechanismKorznikova, E.A.,
Zhou, K.,
Galiakhmetova, L.K,
Soboleva, E.G.,
Kudreyko, A.A.,
Dmitriev, S.V. (2021) specific structure and deformation
mechanism. In the first stage, all CNTs have the same cross section
Gareev, Ilgiz,
Beylerli, Ozal,
Ilyasova, Tatiana,
Ahmad, Aamir,
Shi, Huaizhang,
Chekhonin, Vladimir (2024) in the population of developed countries. The solution to this problem lies in the field of revealing the
mechanisms mitigating effects on neuroinflammation. Through a thorough examination of the role and underlying
mechanismsSolnyshkina, O. A.,
Fatkullina, N. B.,
Bulatova, A. Z.,
Kireev, V. N.,
Bilyalov, A. R.,
Akhatov, I. S.,
Pavlov, V. N. (2023) Sintering is a complex physical and
mechanical process, which is one of the most
important
in recent years, where the relative contribution of microRNAs (miRNAs) in the
mechanism of thrombus
Kolesnikov, I.D.,
Shcherbinin, S.A.,
Bebikhov, Yu.V.,
Korznikova, E.A.,
Shepelev, I.A.,
Kudreyko, A.A.,
Dmitriev, S.V. (2024) describe one of the possible
mechanisms of energy dissipation by a crystal lattice in a far
. The sign serves as a “Time machine” of sorts. The
mechanism of time transformation is possible because a
Gareev, Ilgiz,
Kudriashov, Valentin,
Sufianov, Albert,
Begliarzade, Sema,
Ilyasova, Tatiana,
Liang, Yanchaof,
Beylerli, Ozal (2022) of ANRIL, the formation and structure of transcripts, and the
mechanism by which each transcript regulates