Zobrazeno 1 - 10
of 24
pro vyhledávání: '"Sapetsky, A."'
Publikováno v:
Bulletin of the Russian Military Medical Academy. 22:119-123
The possibility of efficient use of the theory of hibernation ensembles to ensure vital activity in extreme conditions is considered. Hibernation ensembles are strictly selected sets of tools, among which are special combinations of pharmacological p
Autor:
N. N. Timofeev, I. B. Ushakov, A. O. Sapetsky, A. S. Shtemberg, N. S. Kositsin, N. V. Sapetsky
Publikováno v:
Biology Bulletin Reviews. 7:443-468
Radiation neurobiology is an interdisciplinary field of science studying the effect of radiation on the nervous system at different levels of its organization (biochemical, molecular, cellular, and system), including higher integrative brain activity
Publikováno v:
Journal of Radio Electronics.
Autor:
S A Sapetsky, A V Korjenevsky
Publikováno v:
Physiological Measurement. 38:1204-1213
Objective. Application of the backprojection image reconstruction algorithm in magnetic induction tomography for imaging of low contrast inclusions in conductive background is investigated. Approach. Both FDTD numerical simulation and experiments wit
Autor:
Franco Cortese, Dmitry Klokov, Afshin Beheshti, Olga Kovalchuk, Charles R. Cantor, Polina Mamoshina, Xiao Wen Mao, Ivan V. Ozerov, Andreyan N. Osipov, Evgeny Izumchenko, Michael J. Pecaut, Sylvain V. Costes, Dmitry Kaminskiy, Jakub Stefaniak, Alexey Moskalev, Quentin Vanhaelen, Alex Zhavoronkov, Alex Sapetsky, Ruth C. Wilkins, Artem V. Artemov, Mikhail Karganov, Irina Alchinova, Sarah Baatout, Igor Ushakov, Jane Schastnaya, Morten Scheibye-Knudsen, João Pedro de Magalhães, Marjan Moreels, Alexander Aliper, A. S. Shtemberg
Publikováno v:
Oncotarget
ONCOTARGET
Cortese, F, Klokov, D, Osipov, A, Stefaniak, J, Moskalev, A, Schastnaya, J, Cantor, C, Aliper, A, Mamoshina, P, Ushakov, I, Sapetsky, A, Vanhaelen, Q, Alchinova, I, Karganov, M, Kovalchuk, O, Wilkins, R, Shtemberg, A, Moreels, M, Baatout, S, Izumchenko, E, de Magalhães, J P, Artemov, A V, Costes, S V, Beheshti, A, Mao, X W, Pecaut, M J, Kaminskiy, D, Ozerov, I V, Scheibye-Knudsen, M & Zhavoronkov, A 2018, ' Vive la radiorésistance! Converging research in radiobiology and biogerontology to enhance human radioresistance for deep space exploration and colonization ', OncoTarget, vol. 9, no. 18, pp. 14692-14722 . https://doi.org/10.18632/oncotarget.24461
ONCOTARGET
Cortese, F, Klokov, D, Osipov, A, Stefaniak, J, Moskalev, A, Schastnaya, J, Cantor, C, Aliper, A, Mamoshina, P, Ushakov, I, Sapetsky, A, Vanhaelen, Q, Alchinova, I, Karganov, M, Kovalchuk, O, Wilkins, R, Shtemberg, A, Moreels, M, Baatout, S, Izumchenko, E, de Magalhães, J P, Artemov, A V, Costes, S V, Beheshti, A, Mao, X W, Pecaut, M J, Kaminskiy, D, Ozerov, I V, Scheibye-Knudsen, M & Zhavoronkov, A 2018, ' Vive la radiorésistance! Converging research in radiobiology and biogerontology to enhance human radioresistance for deep space exploration and colonization ', OncoTarget, vol. 9, no. 18, pp. 14692-14722 . https://doi.org/10.18632/oncotarget.24461
While many efforts have been made to pave the way toward human space colonization, little consideration has been given to the methods of protecting spacefarers against harsh cosmic and local radioactive environments and the high costs associated with
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::575fc9aad1844f9971260bf2d20d12b3
http://livrepository.liverpool.ac.uk/3018995/1/Cortese2018.pdf
http://livrepository.liverpool.ac.uk/3018995/1/Cortese2018.pdf
Publikováno v:
Biology Bulletin Reviews; Nov2017, Vol. 7 Issue 6, p443-468, 26p
Akademický článek
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Publikováno v:
Physiological Measurement. 21:89-94
Magnetic induction tomography (MIT) is a new non-contacting technique for visualization of the electrical impedance distribution inside inhomogeneous media. A measuring system for MIT has been developed. An oscillating magnetic field is applied in th
Publikováno v:
Physiological measurement. 33(5)
The paper describes the development of an electrical impedance tomography (EIT) system for gynecologic research. The GIT (gynecological impedance tomography) system has 48 electrodes and is embedded on a small space (30 mm diameter and 20 mm height)
Publikováno v:
Journal of Physics: Conference Series. 224:012038
Currently rapid development of functional activity researches of human brain sets the problem of reliable and non-invasive detection of mental processes and states. At present we know some traditional methods of rapid and contactless acquisition of b