Initiation, Propagation, and Termination of Epileptiform Activity in Rodent Neocortex In Vitro Involve Distinct Mechanisms
暂无分享,去创建一个
[1] D. Prince. The depolarization shift in "epileptic" neurons. , 1968, Experimental neurology.
[2] W. Spencer,et al. Penicillin-induced interictal discharges from the cat hippocampus. I. Characteristics and topographical features. , 1969, Journal of neurophysiology.
[3] W. Spencer,et al. Penicillin-induced interictal discharges from the cat hippocampus. II. Mechanisms underlying origin and restriction. , 1969, Journal of neurophysiology.
[4] G. Ayala,et al. Neuronal behavior and triggering mechanism in cortical epileptic focus. , 1969, Journal of neurophysiology.
[5] G F Ayala,et al. Excitability changes and inhibitory mechanisms in neocortical neurons during seizures. , 1970, Journal of neurophysiology.
[6] M. Gutnick,et al. Thalamocortical Relay Neurons: Antidromic Invasion of Spikes from a Cortical Epileptogenic Focus , 1972, Science.
[7] J. Craggs. Applied Mathematical Sciences , 1973 .
[8] D A Prince,et al. Development of focal seizures in cerebral cortex: role of axon terminal bursting. , 1978, Journal of neurophysiology.
[9] B. Connors,et al. Mechanisms of neocortical epileptogenesis in vitro. , 1982, Journal of neurophysiology.
[10] R. Traub,et al. Cellular mechanism of neuronal synchronization in epilepsy. , 1982, Science.
[11] R K Wong,et al. Synaptic mechanisms underlying interictal spike initiation in a hippocampal network , 1983, Neurology.
[12] Wong Rk,et al. Synchronized burst discharge in disinhibited hippocampal slice. II. Model of cellular mechanism. , 1983 .
[13] R K Wong,et al. Synchronized burst discharge in disinhibited hippocampal slice. I. Initiation in CA2-CA3 region. , 1983, Journal of neurophysiology.
[14] R K Wong,et al. Synchronized burst discharge in disinhibited hippocampal slice. II. Model of cellular mechanism. , 1983, Journal of neurophysiology.
[15] B. Connors. Initiation of synchronized neuronal bursting in neocortex , 1984, Nature.
[16] R. D. Traub,et al. Synchronized afterdischarges in the hippocampus: Contribution of local synaptic interactions , 1984, Neuroscience.
[17] D. McCormick,et al. Comparative electrophysiology of pyramidal and sparsely spiny stellate neurons of the neocortex. , 1985, Journal of neurophysiology.
[18] B. Connors,et al. Mechanisms of interictal epileptogenesis. , 1986, Advances in neurology.
[19] R K Wong,et al. Inhibitory control of local excitatory circuits in the guinea‐pig hippocampus. , 1987, The Journal of physiology.
[20] R. Traub,et al. The initiation and spread of epileptiform bursts in thein vitro hippocampal slice , 1987, Neuroscience.
[21] J. Hablitz. Spontaneous ictal-like discharges and sustained potential shifts in the developing rat neocortex. , 1987, Journal of neurophysiology.
[22] J. Keener,et al. Singular perturbation theory of traveling waves in excitable media (a review) , 1988 .
[23] R. Traub,et al. Spread of synchronous firing in longitudinal slices from the CA3 region of the hippocampus. , 1988, Journal of neurophysiology.
[24] B. Connors,et al. Periodicity and directionality in the propagation of epileptiform discharges across neocortex. , 1988, Journal of neurophysiology.
[25] B. Connors,et al. Horizontal spread of synchronized activity in neocortex and its control by GABA-mediated inhibition. , 1989, Journal of neurophysiology.
[26] B W Connors,et al. Synchronized excitation and inhibition driven by intrinsically bursting neurons in neocortex. , 1989, Journal of neurophysiology.
[27] J. Hablitz,et al. Initiation of epileptiform activity by excitatory amino acid receptors in the disinhibited rat neocortex. , 1991, Journal of neurophysiology.
[28] B. Connors,et al. Intrinsic oscillations of neocortex generated by layer 5 pyramidal neurons. , 1991, Science.
[29] B. Connors,et al. Thalamocortical responses of mouse somatosensory (barrel) cortexin vitro , 1991, Neuroscience.
[30] R. Traub,et al. Synaptic and intrinsic conductances shape picrotoxin‐induced synchronized after‐discharges in the guinea‐pig hippocampal slice. , 1993, The Journal of physiology.
[31] Christopher Jones,et al. Geometric singular perturbation theory , 1995 .
[32] J. Cole,et al. Multiple Scale and Singular Perturbation Methods , 1996 .
[33] B. Rörig,et al. Intracellular acidification reduced gap junction coupling between immature rat neocortical pyramidal neurones. , 1996, The Journal of physiology.
[34] P. M. Lundquist,et al. Organic Glasses: A New Class of Photorefractive Materials , 1996, Science.
[35] F. Werblin,et al. Requirement for Cholinergic Synaptic Transmission in the Propagation of Spontaneous Retinal Waves , 1996, Science.
[36] Y. Amitai,et al. Propagating neuronal discharges in neocortical slices: computational and experimental study. , 1997, Journal of neurophysiology.
[37] Bard Ermentrout,et al. Neural Nets as Spatio-temporal Pattern Forming Systems , 1997 .
[38] C. Shatz,et al. Dynamic Processes Shape Spatiotemporal Properties of Retinal Waves , 1997, Neuron.
[39] J. Csicsvari,et al. Termination of Epileptic Afterdischarge in the Hippocampus Materials and Methods , 1997 .
[40] Y Tsau,et al. Initiation of spontaneous epileptiform activity in the neocortical slice. , 1998, Journal of neurophysiology.
[41] B W Connors,et al. Layer‐Specific Pathways for the Horizontal Propagation of Epileptiform Discharges in Neocortex , 1998, Epilepsia.
[42] M. Avoli,et al. Laminar organization of epileptiform discharges in the rat entorhinal cortex in vitro , 1998, The Journal of physiology.
[43] B. Ermentrout. Neural networks as spatio-temporal pattern-forming systems , 1998 .
[44] C. Shatz,et al. Retinal Waves Are Governed by Collective Network Properties , 1999, The Journal of Neuroscience.
[45] H. Kettenmann. Physiology of glial cells. , 1999, Advances in neurology.
[46] B. Connors,et al. Sensory experience modifies the short-term dynamics of neocortical synapses , 1999, Nature.
[47] B. MacVicar,et al. Modulation of neuronal excitability by astrocytes. , 1999, Advances in neurology.
[48] J. L. Stringer,et al. Activity-Dependent Intracellular Acidification Correlates with the Duration of Seizure Activity , 2000, The Journal of Neuroscience.
[49] B W Connors,et al. Dynamic properties of cells, synapses, circuits, and seizures in neocortex. , 2000, Advances in neurology.
[50] Carl van Vreeswijk,et al. Patterns of Synchrony in Neural Networks with Spike Adaptation , 2001, Neural Computation.
[51] Bard Ermentrout,et al. Spatially Structured Activity in Synaptically Coupled Neuronal Networks: I. Traveling Fronts and Pulses , 2001, SIAM J. Appl. Math..
[52] Carson C. Chow,et al. Stationary Bumps in Networks of Spiking Neurons , 2001, Neural Computation.
[53] P. Bressloff. Traveling fronts and wave propagation failure in an inhomogeneous neural network , 2001 .
[54] Pavlos Rigas,et al. Synchronized oscillations caused by disinhibition in rodent neocortex are generated by recurrent synaptic activity mediated by AMPA receptors , 2002, The Journal of physiology.
[55] G. Dillon,et al. Functional characterization of GABA(A) receptors in neonatal hypothalamic brain slice. , 2002, Journal of neurophysiology.
[56] M. A. Pozo,et al. Excitatory and inhibitory control of epileptiform discharges in combined hippocampal/entorhinal cortical slices , 2002, Brain Research.
[57] P. Carlen,et al. Anticonvulsant actions of gap junctional blockers in an in vitro seizure model. , 2002, Journal of neurophysiology.
[58] I. Tarnawa,et al. Comparison of spontaneous and evoked epileptiform activity in three in vitro epilepsy models , 2002, Brain Research.
[59] Xiao-Jing Wang,et al. Persistent neural activity: experiments and theory. , 2003, Cerebral cortex.
[60] J. Martinerie,et al. Toward a Neurodynamical Understanding of Ictogenesis , 2003, Epilepsia.
[61] Marom Bikson,et al. Depolarization block of neurons during maintenance of electrographic seizures. , 2003, Journal of neurophysiology.
[62] D. Simons,et al. Cortical damping: analysis of thalamocortical response transformations in rodent barrel cortex. , 2003, Cerebral cortex.
[63] K. Staley,et al. Transition from Interictal to Ictal Activity in Limbic Networks In Vitro , 2003, The Journal of Neuroscience.
[64] Arne Schousboe,et al. Role of Astrocytes in the Maintenance and Modulation of Glutamatergic and GABAergic Neurotransmission , 2003, Neurochemical Research.
[65] Jian-Young Wu,et al. Initiation of spontaneous epileptiform events in the rat neocortex in vivo. , 2004, Journal of neurophysiology.