Angstadt JD, Friesen WO. (1991). Synchronized oscillatory activity in leech neurons induced by calcium channel blockers. Journal of neurophysiology. 66 [PubMed]

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References and models cited by this paper

Agopyan N, Avoli M. (1988). Synaptic and non-synaptic mechanisms underlying low calcium bursts in the in vitro hippocampal slice. Experimental brain research. 73 [PubMed]

Alonso A, Llinás RR. (1989). Subthreshold Na+-dependent theta-like rhythmicity in stellate cells of entorhinal cortex layer II. Nature. 342 [PubMed]

Andrew RD. (1987). Endogenous bursting by rat supraoptic neuroendocrine cells is calcium dependent. The Journal of physiology. 384 [PubMed]

Angstadt JD, Calabrese RL. (1991). Calcium currents and graded synaptic transmission between heart interneurons of the leech. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Angstadt JD, Stretton AO. (1989). Slow active potentials in ventral inhibitory motor neurons of the nematode Ascaris. Journal of comparative physiology. A, Sensory, neural, and behavioral physiology. 166 [PubMed]

Arbas EA, Calabrese RL. (1987). Ionic conductances underlying the activity of interneurons that control heartbeat in the medicinal leech. The Journal of neuroscience : the official journal of the Society for Neuroscience. 7 [PubMed]

Bader CR, Bernheim L, Bertrand D. (2004). Sodium-activated potassium current in cultured avian neurones. Nature. 317

Baylor DA, Nicholls JG. (1969). After-effects of nerve impulses on signalling in the central nervous system of the leech. The Journal of physiology. 203 [PubMed]

Benson JA. (1980). Burst reset and frequency control of the neuronal oscillators in the cardiac ganglion of the crab, Portunus sanguinolentus. The Journal of experimental biology. 87 [PubMed]

Benson JA, Adams WB. (1989). Ionic mechanisms of endogenous activityin molluscan burster neurons. Neuronal and Cellular Oscillators.

Brodfuehrer PD, Friesen WO. (1986). Initiation of swimming activity by trigger neurons in the leech subesophageal ganglion. I. Output connections of Tr1 and Tr2. Journal of comparative physiology. A, Sensory, neural, and behavioral physiology. 159 [PubMed]

Calabrese RL. (1977). The neural control of alternate heartbeat coordinationstates in the leech, Hirudo medicinalis J Comp Physiol. 122

Calabrese RL, Arbas EA. (1985). Modulation of central and peripheral rhythmicity in the heartbeat system of the leech Model Neural Networks and Behavior.

Calabrese RL, Opdyke CA. (1990). Blockade of outward current uncoversa persistent inward current in heart interneurons of the leech. Hirudo medicinalis Soc Neurosci Abstr. 16

Calabrese RL, Peterson E. (1983). Neural control of heartbeat in the leech, Hirudo medicinalis. Symposia of the Society for Experimental Biology. 37 [PubMed]

Colmers WF, Lewis DV, Wilson WA. (1982). Cs+ loading reveals Na+-dependent persistent inward current and negative slope resistance region in Aplysia giant neurons. Journal of neurophysiology. 48 [PubMed]

Davis RE, Stuart AE. (1988). A persistent, TTX-sensitive sodium current in an invertebrate neuron with neurosecretory ultrastructure. The Journal of neuroscience : the official journal of the Society for Neuroscience. 8 [PubMed]

Dean JA, Leake LD. (1988). Pharmacological control of the pattern of activity in leech Retzius neurones. Comparative biochemistry and physiology. C, Comparative pharmacology and toxicology. 89 [PubMed]

Dean JA, Leake LD, Ford MG. (1986). Pyrethroid action and cellularactivity in invertebrate neurons Pesticide Action.

Drapeau P, Nicholls JG, Dietzel ID. (1986). Voltage dependence of 5-hydroxytryptamine release at a synapse between identified leech neurones in culture. J Physiol. 372

French CR, Gage PW. (1985). A threshold sodium current in pyramidal cells in rat hippocampus. Neuroscience letters. 56 [PubMed]

Friesen W. (1985). Neuronal control of leech swimming movements: interactions between cell 60 and previously described oscillator neurons J Comp Physiol. 156

Friesen W. (1989). Neuronal control of leech swimming movements Neuronal and Cellular Oscillators.

Friesen W. (1989). Neuronal control of leech swimming movements. I. Inhibitoryinteractions between motor neurons. J Comp Physiol. 166

Friesen WO, Block GD. (1984). What is a biological oscillator? The American journal of physiology. 246 [PubMed]

Fuchs PA, Nicholls JG, Ready DF. (1981). Membrane properties and selective connexions of identified leech neurones in culture. The Journal of physiology. 316 [PubMed]

Gainer H. (1972). Electrophysiological behavior of an endogenously active neurosecretory cell. Brain research. 39 [PubMed]

Getting PA. (1989). A network oscillator underlying swimming in Tritonia Neuronal and Cellular Oscillators.

Gola M, Selverston A. (1981). Ionic requirements for bursting activity in lobster stomatogastric neurons J Comp Physiol. 145

Gorman AL, Hermann A, Thomas MV. (1982). Ionic requirements for membrane oscillations and their dependence on the calcium concentration in a molluscan pace-maker neurone. The Journal of physiology. 327 [PubMed]

Gähwiler BH, Dreifuss JJ. (1979). Phasically firing neurons in long-term cultures of the rat hypothalamic supraoptic area: pacemaker and follower cells. Brain research. 177 [PubMed]

Haas HL, Jefferys JG. (1984). Low-calcium field burst discharges of CA1 pyramidal neurones in rat hippocampal slices. The Journal of physiology. 354 [PubMed]

Harris-Warrick RM, Flamm RE. (1987). Multiple mechanisms of bursting in a conditional bursting neuron. The Journal of neuroscience : the official journal of the Society for Neuroscience. 7 [PubMed]

Hartung K. (1985). Potentiation of a transient outward current by Na+ influx in crayfish neurones. Pflugers Archiv : European journal of physiology. 404 [PubMed]

Hille B. (1984). Ionic Channels of Excitable Membranes..

Jahnsen H, Llinás R. (1984). Ionic basis for the electro-responsiveness and oscillatory properties of guinea-pig thalamic neurones in vitro. The Journal of physiology. 349 [PubMed]

Jansen JK, Nicholls JG. (1973). Conductance changes, an electrogenic pump and the hyperpolarization of leech neurones following impulses. The Journal of physiology. 229 [PubMed]

Johansen J, Kleinhaus AL. (1986). Transient and delayed potassium currents in the Retzius cell of the leech, Macrobdella decora. Journal of neurophysiology. 56 [PubMed]

Johansen J, Kleinhaus AL. (1987). Saxitoxin differentiates between two types of Na+-dependent potentials in the Retzius cell of hirudinid leeches. The Journal of experimental biology. 131 [PubMed]

Johnson BR, Harris-Warrick RM. (1987). Potassium channel blockade induces rhythmic activity in a conditional burster neuron. Brain Res. 416

Katz B, Miledi R. (1967). The timing of calcium action during neuromuscular transmission. The Journal of physiology. 189 [PubMed]

Katz B, Miledi R. (1967). Tetrodotoxin and neuromuscular transmission. Proceedings of the Royal Society of London. Series B, Biological sciences. 167 [PubMed]

Konnerth A, Heinemann U, Yaari Y. (1986). Nonsynaptic epileptogenesis in the mammalian hippocampus in vitro. I. Development of seizurelike activity in low extracellular calcium. Journal of neurophysiology. 56 [PubMed]

Kramer RH, Zucker RS. (1985). Calcium-dependent inward current in Aplysia bursting pace-maker neurones. The Journal of physiology. 362 [PubMed]

Kristan WB, Stent GS, Ort CA. (1974). Neuronal control of swimming in the medicinal leech. I Dynamics of the swimming rhythm J Comp Physiol A. 94

Leake LD. (1977). The action of (S)-3-allyl-2-methyl-4-oxocyclo-pent-2-enyl (IR)-trans-chrysanthemate, (S)-Bioallethrin, on single neurones inthe central nervous system of the leech Hirudo medicinalis Pestic Sci.

Leake LD, Ford MG, Lauckner SM. (1979). Relationship between neurophysiological effects of pyrethroids and toxicity to the leech Haemopis sanguisuga and the locust Schistocerca gragaria Proceedings of the Symposium on Insect Neurobiology and Pesticide Action.

Lent CM, Frazer BM. (1977). Connectivity of the monoamine-containing neurones in central nervous system of leech. Nature. 266 [PubMed]

Llinás R, Sugimori M. (1980). Electrophysiological properties of in vitro Purkinje cell somata in mammalian cerebellar slices. The Journal of physiology. 305 [PubMed]

MacVicar BA, Tse FW, Crichton SA, Burnard DM. (2004). Membrane conductance oscillations in astrocytes induced by phorbol ester. Nature. 329

Macagno ER. (1980). Number and distribution of neurons in leech segmental ganglia. The Journal of comparative neurology. 190 [PubMed]

Macgregor RJ. (1987). Neural and Brain Modeling..

Mironneau J, Eugene D, Mironneau C. (1982). Sodium action potentials induced by calcium chelation in rat uterine smooth muscle. Pflugers Archiv : European journal of physiology. 395 [PubMed]

Muller KJ, Nicholls JG. (1981). Neurobiology of the Leech.

Prichard JW. (1972). Events in Leech neurons resembling the paroxysmal depolarization Shift Neurol. 22

Prosser CL, Kreulen DL, Weigel RJ, Yau W. (1977). Prolonged potentials in gastrointestinal muscles induced by calcium chelation. The American journal of physiology. 233 [PubMed]

Ready DF, Nicholls J. (1979). Identified neurones isolated from leech CNS make selective connections in culture. Nature. 281 [PubMed]

Schwindt PC, Spain WJ, Crill WE. (1989). Long-lasting reduction of excitability by a sodium-dependent potassium current in cat neocortical neurons. Journal of neurophysiology. 61 [PubMed]

Selverston AI, Miller JP, Wadepuhl M. (1983). Cooperative mechanisms for the production of rhythmic movements. Symposia of the Society for Experimental Biology. 37 [PubMed]

Smith JB, Dwyer SD, Smith L. (1989). Cadmium evokes inositol polyphosphate formation and calcium mobilization. Evidence for a cell surface receptor that cadmium stimulates and zinc antagonizes. The Journal of biological chemistry. 264 [PubMed]

Spray DC, Bennett MV. (1985). Physiology and pharmacology of gap junctions. Annual review of physiology. 47 [PubMed]

Spray DC, White RL, de Carvalho AC, Harris AL, Bennett MV. (1984). Gating of gap junction channels. Biophysical journal. 45 [PubMed]

Stafstrom CE, Schwindt PC, Crill WE. (1982). Negative slope conductance due to a persistent subthreshold sodium current in cat neocortical neurons in vitro. Brain research. 236 [PubMed]

Stent GS, Thompson WJ. (1976). Neuronal control of heartbeat in the medicinal leech. I. Generation of the vascular constriction rhythm by heart motor neurons J Comp Physiol. 111

Stewart RR, Nicholls JG, Adams WB. (1989). Na+, K+ and Ca2+ currents in identified leech neurones in culture. The Journal of experimental biology. 141 [PubMed]

Taylor CP, Dudek FE. (1984). Excitation of hippocampal pyramidal cells by an electrical field effect. Journal of neurophysiology. 52 [PubMed]

Taylor CP, Dudek FE. (1984). Synchronization without active chemical synapses during hippocampal afterdischarges. Journal of neurophysiology. 52 [PubMed]

Wadepuhl M. (1989). Depression of excitatory motoneurones by a single neurone in the leech central nervous system. The Journal of experimental biology. 143 [PubMed]

Watanabe A, Obara S, Akiyama T. (1967). Pacemaker potentials for the periodic burst discharge in the heart ganglion of a stomatopod, Squilla oratoria. The Journal of general physiology. 50 [PubMed]

Yaari Y, Konnerth A, Heinemann U. (1983). Spontaneous epileptiform activity of CA1 hippocampal neurons in low extracellular calcium solutions. Experimental brain research. 51 [PubMed]

Yaari Y, Konnerth A, Heinemann U. (1986). Nonsynaptic epileptogenesis in the mammalian hippocampus in vitro. II. Role of extracellular potassium. Journal of neurophysiology. 56 [PubMed]

Yang J, Lent CM. (1983). Calcium depletion produces Na+ dependent sustained depolarizations of Retzius cell membranes in the leech CNS J Comp Physiol. 150

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