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http://www.scirp.org/journal/PaperInformation.aspx?PaperID=48147#.VEXz0lfHRK0
Author(s)
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
Department of Neurophysiology, Ivane Beritashvili Center of Experimental Biomedicine, Tbilisi, Georgia.
The main objective of the study was to determine the
effect of gestation and postgestation periods on development and course
of seizure activity. The data obtained in the study showed that i)
there is a reduction of both EEG and behavioral seizures during
gestation in the presence of hippocampal epileptogenic locus (kindling
model); ii) suppression of audiogenic seizures occurs in gestation, and
development of audiogenic kindling and decrease of seizure reactions
occur in the pseudogestation state. It is assumed that in gestation
period the intensification of the possible endogenous inhibitory
mechanisms follows the course of seizure activity.
KEYWORDS
Cite this paper
Nanobashvili, Z. , Bilanishvili, I. , Surmava, A. ,
Bukia, N. , Butskrikidze, M. , Machavariani, L. , Samsieshvili, N. ,
Barbaqadze, M. , Khachidze, I. and Khizanishvili, N. (2014)
Pregnancy: Protection of the Hyperactive Brain, or a Risk Factor?. Journal of Behavioral and Brain Science, 4, 334-341. doi: 10.4236/jbbs.2014.47034.
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