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1
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0028835856
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Activity-related calcium dynamics in lamprey motoneurons as revealed by video-rate confocal microscopy
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Ion channels and the control of swimming in the Xenopus embryo
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Presynaptic inhibition of sensory transmission from sensory, interneuronal, and supraspinal neurons to spinal target cells in lamprey
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El Manira A, Parker D, Krieger P, Wikström M, and Grillner S. Presynaptic inhibition of sensory transmission from sensory, interneuronal, and supraspinal neurons to spinal target cells in lamprey. In: Presynaptic Inhibition and Neural Control, edited by Rudomin P, Romo R, and Mendell L. New York: Oxford UP, 1998, p. 329-348.
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Intrinsic function of a neuronal network - A vertebrate central pattern generator
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0001791740
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Selection and initiation of motor behavior
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Grillner S, Georgopoulos A, and Jordan L Selection and initiation of motor behavior. In: Neurons, Networks, and Motor Behavior, edited by Stein P, Stuart D, Selverston A, and Grillner S. Cambridge MA: MIT, 1997, p. 3-19.
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Activation of pharmacologically distinct metabotropic glutamate receptors depresses reticulospinal-evoked monosynaptic EPSPs in the lamprey spinal cord
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Krieger P, El Manira A, and Grillner S. Activation of pharmacologically distinct metabotropic glutamate receptors depresses reticulospinal-evoked monosynaptic EPSPs in the lamprey spinal cord. J Neurophysiol 76: 3834-3841, 1996.
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Endogenous activation of metabotropic glutamate receptors contributes to burst frequency regulation in the lamprey locomotor network
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Krieger P, Grillner S, and El Manira A. Endogenous activation of metabotropic glutamate receptors contributes to burst frequency regulation in the lamprey locomotor network. Eur J Neurosci 10: 3333-3342, 1998.
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0027787020
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2+ currents, postinhibitory rebound, and postspike afterhyperpolarization in lamprey neurons
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2+ currents, postinhibitory rebound, and postspike afterhyperpolarization in lamprey neurons. J Neurophysiol 70: 2606-2619, 1993.
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10
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0032526973
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Substance P modulates NMDA responses and causes long-term protein-dependent modulation of the lamprey locomotor network
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Parker D, Zhang W, and Grillner S. Substance P modulates NMDA responses and causes long-term protein-dependent modulation of the lamprey locomotor network. J Neurosci 18: 4800-4813, 1998.
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Control of lamprey locomotor neurons by colocalized monoamine transmitters
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Schotland J, Shupliakov O, Wikström M, Brodin L, Srinivasan M, You ZB, Herrera-Marschitz M, Zhang W, Hökfelt T, and Grillner S. Control of lamprey locomotor neurons by colocalized monoamine transmitters. Nature 374: 266-268, 1995.
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12
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0030953452
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Low voltage activated calcium channels in the lamprey locomotor network-simulation and experiment
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Tegnér J, Hellgren-Kotaleski J, Lansner A, and Grillner S. Low voltage activated calcium channels in the lamprey locomotor network-simulation and experiment. J Neurophysiol 77: 1795-1812, 1997.
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Effects of 5-hydroxytryptamine on the afterhyperpolarization, spike frequency regulation, and oscillatory membrane properties in lamprey spinal cord neurons
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Wallén P, Buchanan J, Grillner S, Hill R, Christenson J, and Hökfelt T. Effects of 5-hydroxytryptamine on the afterhyperpolarization, spike frequency regulation, and oscillatory membrane properties in lamprey spinal cord neurons. J Neurophysiol 61: 759-768, 1989.
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N- and P/Q-type calcium channels activate apamin-sensitive calcium dependent potassium channels generating the late afterhyperpolarization in lamprey spinal neurons
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Wikström M and El Manira A. N- and P/Q-type calcium channels activate apamin-sensitive calcium dependent potassium channels generating the late afterhyperpolarization in lamprey spinal neurons. Eur J Neurosci 10: 1528-1532, 1998.
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