Contributions of voltage- and Ca2+-activated conductances to GABA-induced depolarization in spider mechanosensory neurons.
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[1] Andrew S. French,et al. Ratiometric calcium concentration estimation using LED excitation during mechanotransduction in single sensory neurons , 2007, Journal of Neuroscience Methods.
[2] A. S. French,et al. Shunting versus inactivation: Simulation of GABAergic inhibition in spider mechanoreceptors suggests that either is sufficient , 2006, Neuroscience Research.
[3] A. L. Goldin,et al. International Union of Pharmacology. XLVIII. Nomenclature and Structure-Function Relationships of Voltage-Gated Calcium Channels , 2005, Pharmacological Reviews.
[4] I. Panek,et al. Inhibitory glutamate receptors in spider peripheral mechanosensory neurons , 2005, The European journal of neuroscience.
[5] Alain Marty,et al. Excitatory effects of GABA in established brain networks , 2005, Trends in Neurosciences.
[6] A. S. French,et al. Spider Peripheral Mechanosensory Neurons Are Directly Innervated and Modulated by Octopaminergic Efferents , 2005, The Journal of Neuroscience.
[7] A. Marty,et al. Osmotic Tension as a Possible Link between GABAA Receptor Activation and Intracellular Calcium Elevation , 2004, Neuron.
[8] M. Stocker. Ca2+-activated K+ channels: molecular determinants and function of the SK family , 2004, Nature Reviews Neuroscience.
[9] A. S. French,et al. Dendritic excitability and localization of GABA‐mediated inhibition in spider mechanoreceptor neurons , 2004, The European journal of neuroscience.
[10] Darrell R. Abernethy,et al. International Union of Pharmacology: Approaches to the Nomenclature of Voltage-Gated Ion Channels , 2003, Pharmacological Reviews.
[11] I. Panek,et al. Distribution and function of GABAB receptors in spider peripheral mechanosensilla. , 2003, Journal of neurophysiology.
[12] C. Lohr. Monitoring neuronal calcium signalling using a new method for ratiometric confocal calcium imaging. , 2003, Cell calcium.
[13] M. Poo,et al. Coincident Pre- and Postsynaptic Activity Modifies GABAergic Synapses by Postsynaptic Changes in Cl− Transporter Activity , 2003, Neuron.
[14] I. Panek,et al. Neuromodulation of arthropod mechanosensory neurons , 2002, Microscopy research and technique.
[15] I. Meinertzhagen,et al. Peripheral synaptic contacts at mechanoreceptors in arachnids and crustaceans: Morphological and immunocytochemical characteristics , 2002, Microscopy research and technique.
[16] A. S. French,et al. Peripheral GABAergic inhibition of spider mechanosensory afferents , 2002, The European journal of neuroscience.
[17] Jung-Ha Lee,et al. Mibefradil block of cloned T-type calcium channels. , 2000, The Journal of pharmacology and experimental therapeutics.
[18] E Marder,et al. GABA and responses to GABA in the stomatogastric ganglion of the crab Cancer borealis. , 2000, The Journal of experimental biology.
[19] S. D. Kimball,et al. High affinity interaction of mibefradil with voltage‐gated calcium and sodium channels , 2000, British journal of pharmacology.
[20] A. S. French,et al. Low-voltage-activated calcium current does not regulate the firing behavior in paired mechanosensory neurons with different adaptation properties. , 2000, Journal of neurophysiology.
[21] R. Schmidt,et al. Presynaptic inhibition in the vertebrate spinal cord revisited , 1999, Experimental Brain Research.
[22] A. Page,et al. GABAB Receptors Inhibit Mechanosensitivity of Primary Afferent Endings , 1999, The Journal of Neuroscience.
[23] A. El Manira,et al. Shunting versus Inactivation: Analysis of Presynaptic Inhibitory Mechanisms in Primary Afferents of the Crayfish , 1999, The Journal of Neuroscience.
[24] A. S. French,et al. Voltage-activated potassium outward currents in two types of spider mechanoreceptor neurons. , 1999, Journal of neurophysiology.
[25] I. Meinertzhagen,et al. Peripheral Synapses at Identified Mechanosensory Neurons in Spiders: Three-Dimensional Reconstruction and GABA Immunocytochemistry , 1999, The Journal of Neuroscience.
[26] A. S. French,et al. Ionic selectivity of mechanically activated channels in spider mechanoreceptor neurons. , 1997, Journal of neurophysiology.
[27] F. Clarac,et al. Invertebrate presynaptic inhibition and motor control , 1996, Experimental Brain Research.
[28] P. Katz. Neurons, Networks, and Motor Behavior , 1996, Neuron.
[29] R. Tsien,et al. Voltage-dependent blockade of diverse types of voltage-gated Ca2+ channels expressed in Xenopus oocytes by the Ca2+ channel antagonist mibefradil (Ro 40-5967). , 1995, Molecular pharmacology.
[30] B. Walmsley,et al. Serial E-M and simulation study of presynaptic inhibition along a group Ia collateral in the spinal cord. , 1995, Journal of neurophysiology.
[31] A. N. van den Pol,et al. GABA neurotransmission in the hypothalamus: developmental reversal from Ca2+ elevating to depressing , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[32] A. S. French,et al. Sodium-dependent receptor current in a new mechanoreceptor preparation. , 1994, Journal of neurophysiology.
[33] D. Reichling,et al. Mechanisms of GABA and glycine depolarization‐induced calcium transients in rat dorsal horn neurons. , 1994, The Journal of physiology.
[34] B. Graham,et al. A simulation of action potentials in synaptic boutons during presynaptic inhibition. , 1994, Journal of neurophysiology.
[35] D. R. Curtis,et al. GABA-B receptor-mediated spinal inhibition. , 1994, Neuroreport.
[36] G Laurent,et al. Distribution of GABAergic synaptic terminals on the dendrites of locust spiking local interneurones , 1993, The Journal of comparative neurology.
[37] M. Segal. GABA induces a unique rise of [CA]i in cultured rat hippocampal neurons , 1993, Hippocampus.
[38] G. Laurent,et al. Synaptic potentials in the central terminals of locust proprioceptive afferents generated by other afferents from the same sense organ , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[39] S. Zhang,et al. GABA-activated chloride channels in secretory nerve endings. , 1993, Science.
[40] A. Watson,et al. Presynaptic modulation of sensory afferents in the invertebrate and vertebrate nervous system. , 1992, Comparative biochemistry and physiology. Comparative physiology.
[41] J. Voipio,et al. Inward current caused by sodium‐dependent uptake of GABA in the crayfish stretch receptor neurone. , 1992, The Journal of physiology.
[42] F. Clarac,et al. Direct evidence for presynaptic inhibitory mechanisms in crayfish sensory afferents. , 1992, Journal of neurophysiology.
[43] F. Clarac,et al. GABA‐Mediated Presynaptic Inhibition in Crayfish Primary Afferents by Non‐A, Non‐B GABA Receptors , 1991, The European journal of neuroscience.
[44] G. Laurent,et al. Intersegmental interneurons can control the gain of reflexes in adjacent segments of the locust by their action on nonspiking local interneurons , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[45] J. Connor,et al. Depolarization- and transmitter-induced changes in intracellular Ca2+ of rat cerebellar granule cells in explant cultures , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[46] R. Tsien,et al. A new generation of Ca2+ indicators with greatly improved fluorescence properties. , 1985, The Journal of biological chemistry.
[47] E. Marder,et al. The pharmacological properties of some crustacean neuronal acetylcholine, gamma‐aminobutyric acid, and L‐glutamate responses. , 1978, The Journal of physiology.
[48] L. Vyklický,et al. Changes of of extracellular potassium concentration induced by neuronal activity in the spinal cord of the cat , 1974, The Journal of physiology.
[49] J. Eccles,et al. Central inhibitory action attributable to presynaptic depolarization produced by muscle afferent volleys , 1961, The Journal of physiology.
[50] A. S. French,et al. Acetylcholine receptors in spider peripheral mechanosensilla , 2005, Journal of Comparative Physiology A.
[51] J. Arreola,et al. Calcium-activated chloride channels. , 2005, Annual review of physiology.
[52] P A Fuchs,et al. Mechanisms of hair cell tuning. , 1999, Annual review of physiology.
[53] Ranulfo Romo,et al. Presynaptic inhibition and neural control , 1998 .
[54] J. Ruppersberg. Ion Channels in Excitable Membranes , 1996 .
[55] R. Tsien,et al. Molecular diversity of voltage-dependent Ca2+ channels. , 1991, Trends in pharmacological sciences.
[56] N. Bowery,et al. GABAB̳ receptors in mammalian function , 1990 .
[57] L. Vyklický. [Calcium-activated potassium channels]. , 1985, Ceskoslovenska fysiologie.
[58] S. Langer,et al. Presynaptic receptors , 1978, Nature.
[59] K. Frank. Presynaptic and postsynaptic inhibition of monosynaptic reflexes , 1957 .