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- W1982893757 abstract "The mechanisms underlying antiepileptic or antiepileptogenic effects of repeated transcranial magnetic stimulation (rTMS) are poorly understood. In this study, we investigated the effect of rTMS applied during rapid amygdala kindling on some electrophysiological properties of hippocampal CA1 pyramidal neurons. Male Wistar rats were kindled by daily electrical stimulation of the basolateral amygdala in a semi-rapid manner (12 stimulations/day) until they achieved stage-5 seizure. One group (kindled + rTMS (KrTMS)) of animals received rTMS (1 Hz for 4 min) 5 min after termination of daily kindling stimulations. Twenty four hours following the last kindling stimulation electrophysiological properties of hippocampal CA1 pyramidal neurons were investigated using whole-cell patch-clamp technique. Amygdala kindling significantly depolarized the resting membrane potential and increased the input resistance, spontaneous firing activity, number of evoked spikes and half-width of the first evoked spike. Kindling also decreased the first-spike latency and amplitude significantly. Application of rTMS during kindling somehow prevented the development of seizures and protected CA1 pyramidal neurons of hippocampus against deleterious effect of kindling on both passive and active neuronal electrophysiological properties. Interestingly, application of rTMS alone enhanced the excitability of CA1 pyramidal neurons significantly. Based on the results of our study, it may be suggested that rTMS exerts its anticonvulsant effect, in part, through preventing the amygdala kindling-induced changes in electrophysiological properties of hippocampal CA1 pyramidal neurons. It seems that rTMS exerts protective effects on the neural circuits involved in spreading the seizures from the focus to other parts of the brain." @default.
- W1982893757 created "2016-06-24" @default.
- W1982893757 creator A5001454608 @default.
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- W1982893757 creator A5052614477 @default.
- W1982893757 creator A5076245313 @default.
- W1982893757 creator A5066412071 @default.
- W1982893757 date "2014-11-01" @default.
- W1982893757 modified "2023-10-10" @default.
- W1982893757 title "Repeated transcranial magnetic stimulation prevents kindling-induced changes in electrophysiological properties of rat hippocampal CA1 pyramidal neurons" @default.
- W1982893757 cites W1540820991 @default.
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- W1982893757 cites W1596837735 @default.
- W1982893757 cites W1845419411 @default.
- W1982893757 cites W1922134188 @default.
- W1982893757 cites W1963837902 @default.
- W1982893757 cites W1970425067 @default.
- W1982893757 cites W1973507021 @default.
- W1982893757 cites W1976446154 @default.
- W1982893757 cites W1976763631 @default.
- W1982893757 cites W1980432749 @default.
- W1982893757 cites W1980734822 @default.
- W1982893757 cites W1980805930 @default.
- W1982893757 cites W1982460379 @default.
- W1982893757 cites W1990944689 @default.
- W1982893757 cites W1991673195 @default.
- W1982893757 cites W1997293666 @default.
- W1982893757 cites W1998450146 @default.
- W1982893757 cites W2000668776 @default.
- W1982893757 cites W2001623654 @default.
- W1982893757 cites W2003710403 @default.
- W1982893757 cites W2007860569 @default.
- W1982893757 cites W2011075804 @default.
- W1982893757 cites W2014493574 @default.
- W1982893757 cites W2016478370 @default.
- W1982893757 cites W2020023795 @default.
- W1982893757 cites W2034132958 @default.
- W1982893757 cites W2034753893 @default.
- W1982893757 cites W2040624688 @default.
- W1982893757 cites W2042175314 @default.
- W1982893757 cites W2048635483 @default.
- W1982893757 cites W2052103464 @default.
- W1982893757 cites W2054983715 @default.
- W1982893757 cites W2062977022 @default.
- W1982893757 cites W2065693649 @default.
- W1982893757 cites W2070032514 @default.
- W1982893757 cites W2070973929 @default.
- W1982893757 cites W2072742854 @default.
- W1982893757 cites W2080610229 @default.
- W1982893757 cites W2086761154 @default.
- W1982893757 cites W2086761921 @default.
- W1982893757 cites W2093169205 @default.
- W1982893757 cites W2093711343 @default.
- W1982893757 cites W2097572433 @default.
- W1982893757 cites W2101333119 @default.
- W1982893757 cites W2103156942 @default.
- W1982893757 cites W2103392151 @default.
- W1982893757 cites W2103596611 @default.
- W1982893757 cites W2103946141 @default.
- W1982893757 cites W2104137290 @default.
- W1982893757 cites W2105423985 @default.
- W1982893757 cites W2111056997 @default.
- W1982893757 cites W2113078968 @default.
- W1982893757 cites W2117052856 @default.
- W1982893757 cites W2119397841 @default.
- W1982893757 cites W2122239141 @default.
- W1982893757 cites W2124778841 @default.
- W1982893757 cites W2129291496 @default.
- W1982893757 cites W2134351637 @default.
- W1982893757 cites W2137046511 @default.
- W1982893757 cites W2139411546 @default.
- W1982893757 cites W2143817103 @default.
- W1982893757 cites W2144465576 @default.
- W1982893757 cites W2146260834 @default.
- W1982893757 cites W2154896651 @default.
- W1982893757 cites W2156677955 @default.
- W1982893757 cites W2161208527 @default.
- W1982893757 cites W2162634566 @default.
- W1982893757 cites W2164009595 @default.
- W1982893757 cites W2166890181 @default.
- W1982893757 cites W2170133769 @default.
- W1982893757 cites W2288331821 @default.
- W1982893757 cites W2297181221 @default.
- W1982893757 cites W2317495993 @default.
- W1982893757 cites W942256892 @default.
- W1982893757 doi "https://doi.org/10.1016/j.neuroscience.2014.09.022" @default.
- W1982893757 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25241070" @default.
- W1982893757 hasPublicationYear "2014" @default.
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