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Drug Discovery Today: Disease Models (78)
References
102
Referenced
52
10.1126/science.3037700
/ Science (New York, NY) / Cellular mechanisms of epilepsy: a status report by Dichter (1987)10.1038/2882
/ Nat. Neurosci. / Frequency-dependent synaptic depression and the balance of excitation and inhibition in the neocortex by Galarreta (1998)10.1038/2775
/ Nat. Neurosci. / Synaptic depression: a key player in the cortical balancing act by Nelson (1998)10.1007/BF00966088
/ Neurochem. Res. / Electrophysiology of GABA-mediated synaptic transmission and possible roles in epilepsy by Tasker (1991)10.1152/jn.1989.61.4.747
/ J. Neurophysiol. / Horizontal spread of synchronized activity in neocortex and its control by GABA-mediated inhibition by Chagnac-Amitai (1989)10.1152/jn.1989.62.5.1149
/ J. Neurophysiol. / Synchronized excitation and inhibition driven by intrinsically bursting neurons in neocortex by Chagnac-Amitai (1989)10.1152/jn.1982.48.6.1321
/ J. Neurophysiol. / Mechanisms of neocortical epileptogenesis in vitro by Gutnick (1982)10.1016/0014-4886(64)90026-3
/ Exp. Neurol. / Cortical cellular phenomena in experimental epilepsy: ictal manifestations by Matsumoto (1964)10.1016/0014-4886(64)90025-1
/ Exp. Neurol. / Cortical cellular phenomena in experimental epilepsy: interictal manifestations by Matsumoto (1964)10.1146/annurev.ne.01.030178.002143
/ Annu. Rev. Neurosci. / Neurophysiology of epilepsy by Prince (1978)10.1152/jn.1998.80.3.1456
/ J. Neurophysiol. / Spike–wave complexes and fast components of cortically generated seizures. II. Extra- and intracellular patterns by Steriade (1998)10.1126/science.7444469
/ Science (New York, NY) / Giant synaptic potential hypothesis for epileptiform activity by Johnston (1981)10.1016/S0306-4522(98)00201-2
/ Neuroscience / Cellular mechanisms underlying spontaneous interictal spikes in an acute model of focal cortical epileptogenesis by de Curtis (1999)10.1002/ana.410160710
/ Ann. Neurol. / Mechanisms of epileptogenesis in cortical structures by Prince (1984)10.1152/jn.00523.2003
/ J. Neurophys. / Contribution of intrinsic cellular factors in the generation of cortically generated electrographic seizures by Timofeev (2004)10.1016/0006-8993(83)91098-3
/ Brain Res. / Cellular and synaptic basis of kainic acid-induced hippocampal epileptiform activity by Westbrook (1983)10.1016/0006-8993(78)90544-9
/ Brain Res. / Participation of calcium spikes during intrinsic burst firing in hippocampal neurons by Wong (1978)10.1126/science.1076510
/ Science (New York, NY) / On the origin of interictal activity in human temporal lobe epilepsy in vitro by Cohen (2002)10.1016/0920-1211(90)90063-2
/ Epilepsy Res. / GABAergic neurons are spared after intrahippocampal kainate in the rat by Davenport (1990)10.1111/j.0013-9580.2003.12002.x
/ Epilepsia / Advances in understanding the process of epileptogenesis based on patient material: what can the patient tell us? by Engel (2003)10.1073/pnas.94.22.12151
/ Proc. Natl. Acad. Sci. U. S. A. / Operative GABAergic inhibition in hippocampal CA1 pyramidal neurons in experimental epilepsy by Esclapez (1997)10.1007/BF00248498
/ Exp. Brain Res. / Inhibitory processes in development of seizure activity in hippocampal slices by Higashima (1988)10.1016/S0920-1211(98)00042-4
/ Epilepsy Res. / Inhibitory function in two models of chronic epileptogenesis by Prince (1998)10.1016/S0306-4522(02)00300-7
/ Neuroscience / The role of chloride-dependent inhibition and the activity of fast-spiking neurons during cortical spike–wave seizures by Timofeev (2002)10.1046/j.1460-9568.2003.02742.x
/ Eur. J. Neurosci. / Hyperexcitability of intact neurons underlies acute development of trauma-related electrographic seizures in cats in vivo by Topolnik (2003)10.1111/j.1528-1157.1996.tb00042.x
/ Epilepsia / On the structure of ictal events in vitro by Traub (1996)10.1152/jn.2001.86.5.2231
/ J. Neurophysiol. / Disruption of inhibition in area CA1 of the hippocampus in a rat model of temporal lobe epilepsy by Denslow (2001)10.1093/cercor/12.1.98
/ Cereb. Cortex / Motor map expansion following repeated cortical and limbic seizures is related to synaptic potentiation by Teskey (2002)10.1152/jn.1987.57.5.1555
/ J. Neurophysiol. / Anomalous rectification in neurons from cat sensorimotor cortex by Spain (1987)10.1016/S0006-8993(00)02948-6
/ Brain Res. / Potassium-induced enhancement of persistent inward current in hippocampal neurons in isolation and in tissue slices by Somjen (2000)10.1152/jn.1997.77.3.1224
/ J. Neurophysiol. / Role of intrinsic burst firing, potassium accumulation, and electrical coupling in the elevated potassium model of hippocampal epilepsy by Jensen (1997)10.1007/BF00227103
/ Exp. Brain Res. / Pharmacological and electrographic properties of epileptiform activity induced by elevated K+ and lowered Ca2+ and Mg2+ concentration in rat hippocampal slices by Leschinger (1993)10.1152/jn.1997.77.5.2293
/ J. Neurophysiol. / Role of potassium and calcium in the generation of cellular bursts in the dentate gyrus by Pan (1997)10.1111/j.1469-7793.1998.449bn.x
/ J. Physiol. / Intracellular recordings in thalamic neurones during spontaneous spike and wave discharges in rats with absence epilepsy by Pinault (1998){'year': '2003', 'series-title': 'Neuronal Substrates of Sleep and Epilepsy', 'author': 'Steriade', 'key': '10.1016/j.ddmod.2008.07.005_bib35'}
/ Neuronal Substrates of Sleep and Epilepsy by Steriade (2003)10.1152/jn.1998.80.3.1439
/ J. Neurophysiol. / Spike–wave complexes and fast components of cortically generated seizures. I. Role of neocortex and thalamus by Steriade (1998)10.1152/jn.1998.80.3.1495
/ J. Neurophysiol. / Spike–wave complexes and fast components of cortically generated seizures. IV. Paroxysmal fast runs in cortical and thalamic neurons by Timofeev (1998)10.1016/j.neuroscience.2003.08.051
/ Neuroscience / Neocortical seizures: initiation, development and cessation by Timofeev (2004)10.1111/j.1535-7597.2005.05208.x
/ Epilepsy Curr. (American Epilepsy Society) / Neurons do the wave (and the spike!) during neocortical seizures by Stafstrom (2005)10.1016/0013-4694(74)90028-5
/ Electroencephalogr. Clin. Neurophysiol. / Interneuronal epileptic discharges related to spike-and-wave cortical seizures in behaving monkeys by Steriade (1974)10.1113/jphysiol.1995.sp020612
/ J. Physiol. / Synaptic and membrane mechanisms underlying synchronized oscillations in the ferret lateral geniculate nucleus in vitro by Bal (1995)10.1016/0013-4694(56)90082-7
/ Electroencephalogr. Clin. Neurophysiol. / Thalamic control of certain normal and abnormal cortical rhythms by Ajmone-Marsan (1956)10.1523/JNEUROSCI.19-20-09090.1999
/ J. Neurosci. / Presynaptic long-term potentiation in corticothalamic synapses by Castro-Alamancos (1999)10.1523/JNEUROSCI.15-01-00623.1995
/ J. Neurosci. / Relations between cortical and thalamic cellular events during transition from sleep patterns to paroxysmal activity by Steriade (1995)10.1017/S147292880100022X
/ Thalamus Relat. Syst. / Corticothalamic operations through prevalent inhibition of thalamocortical neurons by Steriade (2001){'key': '10.1016/j.ddmod.2008.07.005_bib46', 'series-title': 'Electroencephalography: Basic Principles, Clinical Applications, and Related Fields', 'first-page': '255', 'article-title': 'Abnormal EEG patterns: epileptic and paroxysmal', 'author': 'Niedermeyer', 'year': '2005'}
/ Electroencephalography: Basic Principles, Clinical Applications, and Related Fields / Abnormal EEG patterns: epileptic and paroxysmal by Niedermeyer (2005){'key': '10.1016/j.ddmod.2008.07.005_bib47', 'series-title': 'Electroencephalography: Basic Principles, Clinical Applications, and Related Fields', 'first-page': '505', 'article-title': 'Epileptic seizure disorders', 'author': 'Niedermeyer', 'year': '2005'}
/ Electroencephalography: Basic Principles, Clinical Applications, and Related Fields / Epileptic seizure disorders by Niedermeyer (2005)10.1146/annurev.physiol.63.1.815
/ Annu. Rev. Physiol. / On the cellular and network bases of epileptic seizures by McCormick (2001)10.1523/JNEUROSCI.14-06-03413.1994
/ J. Neurosci. / Cellular and molecular basis of epilepsy by McNamara (1994)10.1002/ana.410160711
/ Ann. Neurol. / The synaptic nature of the paroxysmal depolarizing shift in hippocampal neurons by Johnston (1984)10.1139/y97-036
/ Can. J. Physiol. Pharmacol. / Chronic focal neocortical epileptogenesis: does disinhibition play a role? by Prince (1997)10.1016/S0306-4522(03)00102-7
/ Neuroscience / Excitatory gaba input directly drives seizure-like rhythmic synchronization in mature hippocampal CA1 pyramidal cells by Fujiwara-Tsukamoto (2003)10.1152/jn.1989.61.3.501
/ J. Neurophysiol. / Activity-dependent disinhibition. I. Repetitive stimulation reduces IPSP driving force and conductance in the hippocampus in vitro by Thompson (1989)10.1523/JNEUROSCI.17-20-07662.1997
/ J. Neurosci. / Long-lasting GABA-mediated depolarization evoked by high-frequency stimulation in pyramidal neurons of rat hippocampal slice is attributable to a network-driven, bicarbonate-dependent K+ transient by Kaila (1997)10.1152/jn.1997.77.4.2213
/ J. Neurophysiol. / Posttetanic excitation mediated by GABAa receptors in rat CA1 pyramidal neurons by Taira (1997)10.1523/JNEUROSCI.20-21-08069.2000
/ J. Neurosci. / Potassium-coupled chloride cotransport controls intracellular chloride in rat neocortical pyramidal neurons by DeFazio (2000)10.1016/S0166-2236(03)00068-7
/ Trends Neurosci. / Cation-chloride co-transporters in neuronal communication, development and trauma by Payne (2003)10.1016/0006-8993(87)90990-5
/ Brain Res. / Intracellular recordings in pericruciate neurons during spike and wave discharges of feline generalized penicillin epilepsy by Giaretta (1987)10.1016/0013-4694(64)90163-4
/ Electroencephalogr. Clin. Neurophysiol. / Intracellular studies of cortical neurons during thalamic induced wave and spike by Pollen (1964)10.1523/JNEUROSCI.18-21-09099.1998
/ J. Neurosci. / Spike-and-wave oscillations based on the properties of GABAB receptors by Destexhe (1998){'key': '10.1016/j.ddmod.2008.07.005_bib61', 'first-page': '120', 'article-title': 'Effects of intracellularly injected currents on the PDS and the hyperpolarizing after-potential in neurons within an epileptic focus', 'volume': '26', 'author': 'Matsumoto', 'year': '1969', 'journal-title': 'Electroencephalogr. Clin. Neurophysiol.'}
/ Electroencephalogr. Clin. Neurophysiol. / Effects of intracellularly injected currents on the PDS and the hyperpolarizing after-potential in neurons within an epileptic focus by Matsumoto (1969)10.1016/S0306-4522(99)00571-0
/ Neuroscience / Changes in neuronal conductance during different components of cortically generated spike–wave seizures by Neckelmann (2000)10.1016/S0028-3908(99)00139-2
/ Neuropharmacology / On the putative contribution of GABA(B) receptors to the electrical events occurring during spontaneous spike and wave discharges by Charpier (1999)10.1038/nrn811
/ Nat. Rev. Neurosci. / Childhood absence epilepsy: genes, channels, neurons and networks by Crunelli (2002)10.1523/JNEUROSCI.21-04-01378.2001
/ J. Neurosci. / Contribution of GABA(A) and GABA(B) receptors to thalamic neuronal activity during spontaneous absence seizures in rats by Staak (2001)10.1002/(SICI)1098-2396(199701)25:1<62::AID-SYN8>3.0.CO;2-D
/ Synapse (New York, NY) / Presynaptic and postsynaptic GABAB receptors of neocortical neurons of the rat in vitro: differences in pharmacology and ionic mechanisms by Deisz (1997)10.1152/jn.1993.69.3.764
/ J. Neurophysiol. / Opponent effects of potassium on GABAa-mediated postsynaptic inhibition in the rat hippocampus by Jensen (1993)10.1016/0304-3940(86)90198-9
/ Neurosci. Lett. / M-current in human neocortical neurones by Halliwell (1986)10.1152/jn.1988.59.2.424
/ J. Neurophysiol. / Multiple potassium conductances and their functions in neurons from cat sensorimotor cortex in vitro by Schwindt (1988)10.1523/JNEUROSCI.22-03-01042.2002
/ J. Neurosci. / Spatial buffering during slow and paroxysmal sleep oscillations in cortical networks of glial cells in vivo by Amzica (2002)10.1523/JNEUROSCI.20-17-06648.2000
/ J. Neurosci. / Neuronal and glial membrane potentials during sleep and paroxysmal oscillations in the neocortex by Amzica (2000)10.1016/0014-4886(74)90023-5
/ Exp. Neurol. / Extracellular potassium activity during epileptogenesis by Moody (1974)10.1073/pnas.132259899
/ Proc. Natl. Acad. Sci. U. S. A. / Cortical hyperpolarization-activated depolarizing current takes part in the generation of focal paroxysmal activities by Timofeev (2002)10.1152/jn.1996.76.2.698
/ J. Neurophysiol. / Models of subthreshold membrane resonance in neocortical neurons by Hutcheon (1996)10.1152/jn.1996.76.2.683
/ J. Neurophysiol. / Subthreshold membrane resonance in neocortical neurons by Hutcheon (1996)10.1016/S0166-2236(00)01547-2
/ Trends Neurosci. / Resonance, oscillation and the intrinsic frequency preferences of neurons by Hutcheon (2000)10.1152/jn.2002.87.6.2753
/ J. Neurophysiol. / Dendritic resonance in rat neocortical pyramidal cells by Ulrich (2002)10.1523/JNEUROSCI.16-17-05301.1996
/ J. Neurosci. / Laminar localization, morphology, and physiological properties of pyramidal neurons that have the low-threshold calcium current in the guinea-pig medial frontal cortex by de la Peña (1996)10.1016/S0925-2312(01)00348-4
/ Neurocomputing / LTS cells in cerebral cortex and their role in generating spike-and-wave oscillations by Destexhe (2001)10.1046/j.1460-9568.1998.00323.x
/ Eur. J. Neurosci. / Calcium electrogenesis in neocortical pyramidal neurons in vivo by Paré (1998)10.1016/0006-8993(93)91412-L
/ Brain Res. / Analysis of potential shifts associated with recurrent spreading depression and prolonged unstable spreading depression induced by microdialysis of elevated K+ in hippocampus of anesthetized rats by Herreras (1993)10.1523/JNEUROSCI.16-12-03912.1996
/ J. Neurosci. / Synchronous GABA-mediated potentials and epileptiform discharges in the rat limbic system in vitro by Avoli (1996)10.1016/0006-8993(73)90758-0
/ Brain Res. / Measurement of extracellular potassium activity in cat cortex by Prince (1973)10.1523/JNEUROSCI.19-18-08152.1999
/ J. Neurosci. / Impaired K(+) homeostasis and altered electrophysiological properties of post-traumatic hippocampal glia by D’Ambrosio (1999)10.1152/jn.1990.64.3.1009
/ J. Neurophysiol. / Model of synchronized epileptiform bursts induced by high potassium in CA3 region of rat hippocampal slice. Role of spontaneous EPSPs in initiation by Traub (1990)10.1152/jn.2000.84.1.495
/ J. Neurophysiol. / Simulated seizures and spreading depression in a neuron model incorporating interstitial space and ion concentrations by Kager (2000)10.1152/jn.00196.2001
/ J. Neurophysiol. / Conditions sufficient for nonsynaptic epileptogenesis in the CA1 region of hippocampal slices by Bikson (2002)10.1152/jn.00529.2003
/ J. Neurophysiol. / Potassium model for slow (2–3Hz) in vivo neocortical paroxysmal oscillations by Bazhenov (2004)10.1111/j.1528-1167.2008.01707.x
/ Epilepsia / Focal generation of paroxysmal fast runs during electrographic seizures by Boucetta (2008)10.1523/JNEUROSCI.5509-05.2006
/ J. Neurosci. / Slow state transitions of sustained neural oscillations by activity-dependent modulation of intrinsic excitability by Frohlich (2006)10.1103/PhysRevE.74.031922
/ Phys. Rev. E: Stat. Nonlin. Soft Matter Phys. / Coexistence of tonic firing and bursting in cortical neurons by Frohlich (2006){'key': '10.1016/j.ddmod.2008.07.005_bib92', 'article-title': 'Maintenance and termination of neocortical oscillations by dynamic modulation of intrinsic and synaptic excitability', 'author': 'Frohlich', 'year': '2007', 'journal-title': 'Thalamus Relat. Syst.'}
/ Thalamus Relat. Syst. / Maintenance and termination of neocortical oscillations by dynamic modulation of intrinsic and synaptic excitability by Frohlich (2007)10.1056/NEJM200002033420503
/ N. Engl. J. Med. / Early identification of refractory epilepsy by Kwan (2000)10.1126/science.3726539
/ Science (New York, NY) / High potassium conductance in astrocyte endfeet by Newman (1986)10.1523/JNEUROSCI.13-08-03333.1993
/ J. Neurosci. / Inward-rectifying potassium channels in retinal glial (Muller) cells by Newman (1993)10.1152/jn.00529.2003
/ J. Neurophysiol. / Potassium model for slow (2–3Hz) in vivo neocortical paroxysmal oscillations by Bazhenov (2004)10.1523/JNEUROSCI.5509-05.2006
/ J. Neurosci. / Slow state transitions of sustained neural oscillations by activity-dependent modulation of intrinsic excitability by Frohlich (2006)10.1017/S1472928807000155
/ Thalamus Relat. Sys. / Maintenance and termination of neocortical oscillations by dynamic modulation of intrinsic and synaptic excitability by Fröhlich (2007)-
Cressman, J.R. et al. (2008) The Influence of Sodium and Potassium Dynamics on Excitability, Seizures, and the Stability of Persistent States: I. Single Neuron Dynamics. doi:arXiv:0806.3738v2 [q-bio.NC].
(
10.1007/s10827-008-0132-4
) 10.1152/jn.1956.19.2.154
/ J. Neurophysiol. / Mechanisms of spreading cortical depression by Grafstain (1957)10.1177/1073858402008003011
/ Neuroscientist / Ion regulation in the brain: implications for pathophysiology by Somjen GG (2002)10.1177/1073858408317955
/ The Neuroscientist / Potassium dynamics in the epileptic cortex – new insights on an old topic by Frohlich (2008)
Dates
Type | When |
---|---|
Created | 17 years ago (Sept. 7, 2008, 3:12 p.m.) |
Deposited | 2 years, 3 months ago (May 19, 2023, 5:46 p.m.) |
Indexed | 1 month, 2 weeks ago (July 22, 2025, 6:45 a.m.) |
Issued | 17 years, 6 months ago (March 1, 2008) |
Published | 17 years, 6 months ago (March 1, 2008) |
Published Print | 17 years, 6 months ago (March 1, 2008) |
@article{Bazhenov_2008, title={Cellular and network mechanisms of electrographic seizures}, volume={5}, ISSN={1740-6757}, url={http://dx.doi.org/10.1016/j.ddmod.2008.07.005}, DOI={10.1016/j.ddmod.2008.07.005}, number={1}, journal={Drug Discovery Today: Disease Models}, publisher={Elsevier BV}, author={Bazhenov, Maxim and Timofeev, Igor and Fröhlich, Flavio and Sejnowski, Terrence J.}, year={2008}, month=mar, pages={45–57} }