Zobrazeno 1 - 10
of 151
pro vyhledávání: '"V. Ya. Panchenko"'
Autor:
R. A. Akasov, E. V. Khaydukov, D. S. Andreyuk, N. V. Sholina, A. N. Sheremeta, D. V. Romanov, G. P. Kostyuk, V. Ya. Panchenko, M. V. Kovalchuk
Publikováno v:
Frontiers in Pharmacology, Vol 13 (2022)
Background: COVID-19 treatment remains a challenge for medicine because of the extremely short time for clinical studies of drug candidates, so the drug repurposing strategy, which implies the use of well-known and safe substances, is a promising app
Externí odkaz:
https://doaj.org/article/546401c7bd8c4716aaecf0614e1251c7
Autor:
V. V. Rocheva, N. V. Sholina, S. P. Derevyashkin, A. N. Generalova, A. V. Nechaev, D. A. Khochenkov, V. A. Semchishen, E. V. Khaydukov, E. V. Stepanova, V. Ya. Panchenko
Publikováno v:
Alʹmanah Kliničeskoj Mediciny, Vol 44, Iss 2, Pp 227-233 (2016)
Background: To improve quality of surgery in oncology, it is necessary to completely remove the tumor, including its metastases, to minimize injury to normal tissues and to reduce duration of an intervention. Modern methods of detection based on radi
Externí odkaz:
https://doaj.org/article/56abd1f0a41143fe9c9522a5535a5c2d
Autor:
A. B. D’yachkov, A. A. Gorkunov, S. K. Kovalevich, A. V. Labozin, S. M. Mironov, V. A. Firsov, G. O. Tsvetkov, V. Ya. Panchenko
Publikováno v:
Plasma Physics Reports. 49:443-448
Autor:
M. V. Kovalchuk, M. M. Borisov, A. A. Garmatina, V. M. Gordienko, A. M. Zheltikov, V. V. Kvardakov, V. N. Korchuganov, I. A. Likhachev, E. I. Mareev, A. V. Mitrofanov, M. M. Nazarov, E. M. Pashaev, F. V. Potemkin, Ya. O. Romanovskii, E. B. Rudneva, D. A. Sidorov-Biryukov, I. A. Subbotin, M. V. Chashchin, P. A. Shcheglov, V. Ya. Panchenko
Publikováno v:
Crystallography Reports. 67:717-728
Autor:
M. M. Nazarov, A. A. Garmatina, A. V. Mitrofanov, D. A. Sidorov-Biryukov, P. A. Scheglov, M. V. Chashchin, F. V. Potemkin, V. M. Gordienko, A. M. Zheltikov, V. Ya. Panchenko
Publikováno v:
Armenian Journal of Physics. :35-41
Currently, the Kurchatov Laser−Synchrotron Complex is conducting research on the interaction of powerful femtosecond laser radiation with matter. The purpose of these studies is to develop new techniques and approaches for the characterization of h
Autor:
M.M. Nazarov, A. V. Mitrofanov, D. A. Sidorov-Biryukov, P.A. Scheglov, M.V. Chaschin, S. Yu. Sarkisov, A. M. Zheltikov, V. Ya. Panchenko
Publikováno v:
2022 International Conference Laser Optics (ICLO).
Autor:
A.P. Grebenkin, S.P. Naurzakov, M. A. Polikarpov, V. L. Vvedenskiy, V. Ya. Panchenko, D. P. Bondarev
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 84:1385-1389
Magnetic responses of the brain to rhythmic visual stimulation are measured at frequencies of ~10 Hz using a 7-channel SQUID magnetoencephalograph. Despite the stationarity of the stimulation, the responses of the brain demonstrate the constant insta
Autor:
Denis N. Karimov, Polina A. Demina, A. V. Koshelev, Evgeny V. Khaydukov, Vitaly P. Zubov, V. Ya. Panchenko, A. V. Sokovikov, M. V. Kovalchuk, V. V. Rocheva, Alla N. Generalova
Publikováno v:
Nanotechnologies in Russia. 15:655-678
In the late 1990s, the unique possibilities application of inorganic nanocrystals with anti-Stokes photoluminescence were demonstrated. In a fairly short period, a significant breakthrough has been achieved in this field due to the development of new
Autor:
Aleksey Nikitin, M. A. Polikarpov, V. Ya. Panchenko, M. A. Chuev, V. M. Cherepanov, Maxim A. Abakumov, A. Yu. Yurenya, R. R. Gabbasov
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 84:1399-1402
The nonstandard nature of intracellular motion is associated with a considerable content of macromolecules and is largely due to the phenomenon of abnormal diffusion. Features of the motion of nanoparticles in concentrated protein solutions that simu
Autor:
M. A. Chuev, A. Yu. Yurenya, Maxim A. Abakumov, Aleksey Nikitin, R. R. Gabbasov, M. A. Polikarpov, V. Ya. Panchenko, V. M. Cherepanov, Alexander G. Majouga
Publikováno v:
Crystallography Reports. 65:381-386
An approach to the analysis of intracellular motion with nanosecond temporal resolution, based on the Mossbauer study of particles incorporated into a cell, has been developed. A possibility of applying magnetic nanoparticles as probes for studying i