Search Results - "Szente, M."

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  1. 1

    Involvement of electrical coupling in the in vivo ictal epileptiform activity induced by 4-aminopyridine in the neocortex by Szente, M, Gajda, Z, Said Ali, K, Hermesz, E

    Published in Neuroscience (01-01-2002)
    “…In the present study we have investigated the possible role of gap junctions in the induction and manifestation of 4-aminopyridine-induced acute seizure…”
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  2. 2

    Biotechnology worldwide and the ‘ European Biotechnology Thematic Network ’ Association (EBTNA) by Bruschi, F, Dundar, M, Gahan, PB, Gartland, K, Szente, M, Viola-Magni, MP, Akbarova, Y

    Published in Current opinion in biotechnology (01-09-2011)
    “…The European Biotechnology Congress 2011 held under the auspices of the European Biotechnology Thematic Network Association (EBTNA) in conjunction with the…”
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  3. 3

    Uridine release during aminopyridine-induced epilepsy by Slézia, A, Kékesi, A.K, Szikra, T, Papp, A.M, Nagy, K, Szente, M, Maglóczky, Zs, Freund, T.F, Juhász, G

    Published in Neurobiology of disease (01-08-2004)
    “…Uridine, like adenosine, is released under sustained depolarization and it can inhibit hippocampal neuronal activity, suggesting that uridine may be released…”
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  4. 4

    Exaggeration of epileptic-like patterns by nicotine receptor activation during the GABA withdrawal syndrome by Silva-Barrat, Carmen, Velluti, Julio, Szente, Magdolna, Batini, Cesira, Champagnat, Jean

    Published in Brain research (03-05-2005)
    “…To understand how nicotinic cholinergic receptors may participate in epileptic seizures, we tested the effects of nicotine and of the competitive nicotinic…”
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  5. 5

    Electrophysiological characterization of different types of neurons recorded in vivo in the motor cortex of the cat. II. Membrane parameters, action potentials, current-induced voltage responses and electrotonic structures by Baranyi, A, Szente, M B, Woody, C D

    Published in Journal of neurophysiology (01-06-1993)
    “…1. Electrical properties of four functional classes [inactivating bursting (ib), noninactivating bursting (nib), fast spiking (fsp), and regular spiking (rsp)]…”
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  6. 6

    Electrophysiological characterization of different types of neurons recorded in vivo in the motor cortex of the cat. I. Patterns of firing activity and synaptic responses by Baranyi, A, Szente, M B, Woody, C D

    Published in Journal of neurophysiology (01-06-1993)
    “…1. Patterns of firing activity and characteristics of antidromic and synaptic responses to stimulation of the pyramidal tract at peduncular level [peduncular…”
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  7. 7

    Properties of associative long-lasting potentiation induced by cellular conditioning in the motor cortex of conscious cats by Baranyi, A, Szente, M B, Woody, C D

    Published in Neuroscience (1991)
    “…Mechanisms of long-lasting potentiation of synaptic responses induced in the thalamocortical and recurrent collateral pathways of the pyramidal tract were…”
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  8. 8

    Cellular mechanisms of neocortical secondary epileptogenesis by Szente, M B, Boda, B

    Published in Brain research (20-06-1994)
    “…Firing activity, membrane parameters and postsynaptic responses were studied by recording intracellularly from different types of neurons during the…”
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  9. 9

    Muscarinic Depression of Synaptic Transmission in the Epileptogenic GABA Withdrawal Syndrome Focus by Silva-Barrat, C, Szente, M, Menini, Ch, Velluti, J. C, Champagnat, J

    Published in Journal of neurophysiology (01-05-2001)
    “…Laboratoire de Génétique de la Neurotransmission et des Processus Neurodégénératifs, Unité Mixte de Recherche 9923, Centre National de la Recherche…”
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  10. 10

    Long-lasting potentiation of synaptic transmission requires postsynaptic modifications in the neocortex by Baranyi, A, Szente, M B

    Published in Brain research (13-10-1987)
    “…The mechanisms of associative long-lasting potentiation (LLP) of excitatory postsynaptic potentials (EPSPs) were studied in the motor cortex of anesthetized…”
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  11. 11

    Chronic low‐dose maternal exposure to methylmercury enhances epileptogenicity in developing rats by Szász, A., Barna, B., Szupera, Z., De Visscher, G., Galbács, Z., Kirsch‐Volders, M., Szente, M.

    “…Effects of continuous low‐dose maternal methylmercury intoxication on the induction and propagation of ictal epileptiform activity induced by 3‐aminopyridine,…”
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  12. 12

    Mechanism of aminopyridine-induced ictal seizure activity in the cat neocortex by Szente, M, Baranyi, A

    Published in Brain research (16-06-1987)
    “…Intracellular recordings were obtained from neurons in the motor cortex of anesthetized cats in order to examine membrane and synaptic processes involved in…”
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  13. 13

    Stimulation of substantia nigra pars reticulata suppresses neocortical seizures by Boda, B, Szente, M B

    Published in Brain research (06-03-1992)
    “…The effects of unilateral electrical stimulation of the substantia nigra pars reticulata (SNpr) on the electrocorticographic (ECoG) manifestations of seizures…”
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  14. 14

    Activation patterns of embryonic chick hind-limb muscles following blockade of activity and motoneurone cell death by Landmesser, L T, Szente, M

    Published in The Journal of physiology (01-11-1986)
    “…Motoneurone cell death and spontaneous embryonic motility were blocked in chick embryos by daily in ovo injections of d-tubocurarine from stage 28-36 (E5-10)…”
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    Quinine, a Blocker of Neuronal Cx36 Channels, Suppresses Seizure Activity in Rat Neocortex In Vivo by Gajda, Zita, Szupera, Zoltán, Blazsó, Gábor, Szente, Magdolna

    Published in Epilepsia (Copenhagen) (01-10-2005)
    “…Purpose: The selective contribution of neuronal gap junction (GJ) communication via connexin 36 (Cx36) channels to epileptogenesis and to the maintenance and…”
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    Intracellular injection of apamin reduces a slow potassium current mediating afterhyperpolarizations and IPSPs in neocortical neurons of cats by Szente, M B, Baranyi, A, Woody, C D

    Published in Brain research (27-09-1988)
    “…Electrophysiologic effects of intracellularly injected apamin, a Ca2+-dependent K+ channel blocker, were investigated in neurons of the motor cortex of awake…”
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  20. 20

    Involvement of Gap Junctions in the Manifestation and Control of the Duration of Seizures in Rats In Vivo by Gajda, Zita, Gyengési, Erika, Hermesz, Edit, Ali, K. Said, Szente, Magdolna

    Published in Epilepsia (Copenhagen) (01-12-2003)
    “…Purpose: The possible role of gap junctions in the manifestation and control of the duration of seizures was tested on the 4‐aminopyridine–induced epilepsy…”
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