Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Tatiana G. Novikova"'
Autor:
Lidia L. Chebotariova, Marina V. Globa, Albina I. Tretiakova, Sergey S. Makeev, Ludmila N. Suliy, Alexandr S. Solonovych, Nikolay A. Nikolov, Tatiana G. Novikova
Publikováno v:
Ukrainian Neurosurgical Journal, Iss 2, Pp 61-68 (2018)
Objective. To evaluate the effectiveness of brain evoked potentials for the objectivization of early cognitive disorders (CD) induced by cerebral and regional hypoperfusion.Materials and methods. The influence of hypoperfusion in vertebrobasilar terr
Externí odkaz:
https://doaj.org/article/fa38531aaf0b40099a8e35895badbbce
Autor:
N. A. Nikolov, Vladislav O. Tsikalo, Tatiana G. Novikova, Yelizaveta Kriukova, Sergey S. Makeiev
Publikováno v:
Radioelectronics and Communications Systems. 64:403-412
As has been noted in the analysis of the symmetry of radiopharmaceutical (RPh) distribution between the cerebral hemispheres according to the data of a single-photon emission computed tomography (SPECT), there are quasi-symmetric regions of perfusion
Autor:
Tatiana G. Novikova, Albina Tretiakova, N. A. Nikolov, Ludmila N. Suliy, Sergey S. Makeev, Lidia L. Chebotariova, Alexandr S. Solonovych, Marina Globa
Publikováno v:
Ukrainian Neurosurgical Journal. :61-68
Objective. To evaluate the effectiveness of brain evoked potentials for the objectivization of early cognitive disorders (CD) induced by cerebral and regional hypoperfusion. Materials and methods. The influence of hypoperfusion in vertebrobasilar ter
Publikováno v:
Наукові вісті КПІ; № 1 (2017): ; 61-68
Научные вести КПИ; № 1 (2017): ; 61-68
Research Bulletin of the National Technical University of Ukraine "Kyiv Politechnic Institute"; № 1 (2017): Engineering; 61-68
Наукові вісті НТУУ «КПІ» : міжнародний науково-технічний журнал, 2017, № 1(111)
Научные вести КПИ; № 1 (2017): ; 61-68
Research Bulletin of the National Technical University of Ukraine "Kyiv Politechnic Institute"; № 1 (2017): Engineering; 61-68
Наукові вісті НТУУ «КПІ» : міжнародний науково-технічний журнал, 2017, № 1(111)
Background. Represented by physical and mathematical model of cerebral hemodynamics, considered as a flow system.Objective. Development of cerebral blood flow quantification procedure according to scintigraphy data with 99mTc-HMPAO.Methods. Analytica