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Abbott, N. J., Lane, N. J. and Bundgaard, M (1986). The blood\320brain interface in invertebrates. Ann. N.Y. Acad. Sci 481, 20-.[Medline]

Achenbach, H., Walther, C. and Wicher, D (1997). Octopamine modulates ionic currents and spiking in dorsal unpaired median (DUM) neurons. NeuroReport 8, 3737-.[Medline]

Amat, C., Lapied, B., French, A. S. and Hue, B (1998). Na+-dependent neuritic spikes initiate Ca2+-dependent somatic plateau action potentials in insect dorsal paired median neurons. J. Neurophysiol 80, 2718-.[Abstract/Free Full Text]

Bindokas, V. P. and Adams, M. E (1989). -Aga-I: A presynaptic calcium channel antagonist from venom of the funnel web spider, Agelenopsis aperta. J. Neurobiol 20, 171-.[Medline]

Boyan, G. S. and Ball, E. E (1993). The grasshopper, Drosophila and neuronal homology (advantages of the insect nervous system for the neuroscientist). Prog. Neurobiol 41, 657-.[Medline]

Br\212unig, P. and Eder, M (1998). Locust dorsal unpaired median (DUM) neurones directly innervate and modulate hindleg proprioceptors. J. Exp. Biol 201, 3333-.[Abstract]

Callec, J. J. and Boistel, J (1966). Etude de divers types d'activites electriques enregistrees par microelectrodes capillaires au niveau du dernier ganglion abdominal de la blatte Periplaneta americana L. C . R . Soc. Biol 160, 1963-.

Condron, B. G. and Zinn, K (1994). The grasshopper median neuroblast is a multipotent progenitor cell that generates glia and neurons in distinct temporal phases. J. Neurosci 14, 5766-.[Abstract]

Connor, J. A (1985). Neural pacemakers and rhythmicity. Annu. Rev. Physiol 47, 17-.[Medline]

Crossman, A. R., Kerkut, G. A., Pitman, R. M. and Walker, R. J (1971). Electrically excitable nerve cell bodies in the central ganglion of two insect species Periplaneta americana and Schistocerca gregaria . Investigation of cell geometry and morphology by intracellular dye injection. Comp. Biochem. Physiol 40, 579-.

Crossman, A. R., Kerkut, G. A. and Walker, R. J (1972). Electrophysiological studies on the axon pathways of specified nerve cells in the central ganglia of two insect species, Periplaneta americana and Schistocerca gregaria. Comp. Biochem. Physiol 43, 393-.

Desarmenien, M. G. and Spitzer, N. C (1991). Role of calcium and protein kinase C in development of the delayed rectifier potassium current in Xenopus spinal neurons. Neuron 7, 797-.[Medline]

Dryer, S. E (1994). Na+-activated K+channels: A new family of large-conductance ion channels. Trends Neurosci 23, 333-.

Dubreil, V., Hue, B. and Pelhate, M (1995). Outward chloride/potassium co-transport in insect neurosecretory cells (DUM neurones). Comp. Biochem. Physiol 111, 263-.

Dubreil, V., Sinakevitch, I. G., Hue, B. and Geffard, M (1994). Neuritic GABAergic synapses in insect neurosecretory cells. Neurosci. Res 19, 235-.[Medline]

Dymond, G. R. and Evans, P. D (1979). Biogenic amines in the nervous system of the cockroach, Periplaneta americana : Association of octopamine with mushroom bodies and dorsal unpaired median (DUM) neurones. Insect Biochem 9, 535-.

Eckert, M., Rapus, J., Nurnberger, A. and Penzlin, H (1992). AF. GROLLEAUANDB. LAPIED1646new specific antibody reveals octopamine-like immunoreactivity in cockroach ventral nerve cord. J. Comp. Neurol 320, 1-.[Medline]

Elia, A. J. and Gardner, D. R (1990). Some morphological and physiological characteristics of an identifiable dorsal unpaired median neurone in the metathoracic ganglion of the cockroach Periplaneta americana (L.). Comp. Biochem. Physiol 95, 55-.

Ferber, M. and Pfluger, H. J (1992). An identified dorsal unpaired median neurone and bilaterally projecting neurones exhibiting bovine pancreatic polypeptide-like/FMRF amide-like immunoreactivity in abdominal ganglia of the migratory locust. Cell Tissue Res 267, 85-.[Medline]

Garcia, M. L., Galvez, A., Garcia-Calvo, M., King, V. F., Vasquez, J. and Kaczorowski, G. J (1991). Use of toxins to study potassium channels. J. Bioenerg. Biomembr 23, 615-.[Medline]

Goodman, C. S. and Heitler, W. J (1979). Electrical properties of insect neurones with spiking and non-spiking somata: normal, axotomized and colchicine-treated neurones. J. Exp. Biol 83, 95-.[Free Full Text]

Goodman, C. S., Pearson, K. G. and Spitzer, N. C (1980). Electrical excitability: A spectrum of properties in the progeny of a single embryonic neuroblast. Proc. Natl. Acad. Sci. USA 77, 1676-.[Abstract/Free Full Text]

Goodman, C. S. and Spitzer, N. C (1979). Embryonic development of identified neurones: differentiation from neuroblast to neurone. Nature 280, 208-.[Medline]

Grolleau, F. and Lapied, B (1994). Transient Na+-activated K+current in beating pacemaker isolated adult insect neurosecretory cells (DUM neurones). Neurosci. Lett 167, 46-.[Medline]

Grolleau, F. and Lapied, B (1995). Separation and identification of multiple potassium currents regulating the pacemaker activity of insect neurosecretory cells (DUM neurons). J. Neurophysiol 73, 160-.[Abstract/Free Full Text]

Grolleau, F. and Lapied, B (1996). Two distincts low-voltage-activated Ca2+currents contribute to the pacemaker mechanism in cockroach dorsal unpaired median neurons. J. Neurophysiol 76, 963-.[Abstract/Free Full Text]

Grolleau, F., Lapied, B., Buckingham, S. D., Mason, W. T. and Sattelle, D. B (1996). Nicotine increases [Ca2+]iand regulates electrical activity in insect neurosecretory cells (DUM neurons) via an acetylcholine receptor with \324mixed' nicotinic\320muscarinic pharmacology. Neurosci. Lett 220, 142-.[Medline]

Gu, X., Olson, E. C. and Spitzer, N. C (1994). Spontaneous neuronal calcium spikes and waves during early differentiation. J. Neurosci 14, 6325-.[Abstract]

Hamill, O. P., Marty, A., Neher, E., Sakmann, B. and Sigworth, F. J (1981). Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches. Pflugers Arch 391, 85-.[Medline]

Harrow, I. D., Hue, B., Pelhate, M. and Sattelle, D. B (1980). Cockroach giant interneurones stained by cobalt-backfilling of dissected axons. J. Exp. Biol 84, 341-.[Free Full Text]

Heine, M. and Wicher, D (1998). Ca2+resting current and Ca2+-induced Ca2+release in insect neurosecretory neurons. NeuroReport 9, 3309-.[Medline]

Heitler, W. J. and Goodman, C. S (1978). Multiple sites of spike initiation in a bifurcating locust neurone. J. Exp. Biol 76, 63-.[Abstract/Free Full Text]

Howes, E. A., Cheek, T. R. and Smith, P. J. S (1991). Long-term growth in vitro of isolated, fully differentiated neurones from the central nervous system of an adult insect. J. Exp. Biol 156, 591-.[Abstract/Free Full Text]

Hoyle, G. and Burrows, M (1973). Neural mechanisms underlying behavior in the locust Schistocerca gregaria . I. Physiology of identified motoneurons in the metathoracic ganglion. J. Neurobiol 4, 3-.[Medline]

Hoyle, G. and Dagan, D (1978). Physiological characterization and reflex activation of DUM (octopaminergic) neurons of locust metathoracic ganglion. J. Neurobiol 9, 59-.[Medline]

Hoyle, G., Dagan, D., Moberly, B. and Colquhoun, W (1974). Dorsal unpaired median insect neurons make neurosecretory endings on skeletal muscle. J. Exp. Zool 187, 159-.

Kerkut, G. A., Pitman, R. M. and Walker, R. J (1968). Electrical activity in insect nerve cell bodies. Life Sci 7, 605-.[Medline]

Kostyuk, P. G (1999). Low-voltage activated calcium channels: Achievements and problems. Neuroscience 92, 1157-.[Medline]

Lapied, B., Le Corronc, H. and Hue, B (1990). Sensitive nicotinic and mixed nicotinic-muscarinic receptors in insect neurosecretory cells. Brain Res 533, 132-.[Medline]

Lapied, B., Malecot, C. O. and Pelhate, M (1990). Patch-clamp study of the properties of the sodium current in cockroach single isolated adult aminergic neurones. J. Exp. Biol 151, 387-.[Abstract/Free Full Text]

Lapied, B., Stankiewicz, M., Grolleau, F., Rochat, H., Zlotkin, E. and Pelhate, M (1999). Biophysical properties of scorpion-toxin-sensitive background sodium channel contributing to the pacemaker activity in insect neurosecretory cells (DUM neurons). Eur. J. Neurosci 11, 1449-.[Medline]

Lapied, B., Tribut, F., Sinakevitch, I. G., Hue, B. and Beadle, D. J (1993). Neurite regeneration of long-term cultured adult insect DUM neurones in the insect CNS 1647neurosecretory cells identified as DUM neurons. Tissue & Cell 25, 893-.[Medline]

Luthi, A. and McCormick, D. A (1998). H-current: Properties of a neuronal and network pacemaker. Neuron 21, 9-.[Medline]

Morton, D. B. and Evans, P. D (1984). Octopamine release from an identified neurones in the locust, Schistocerca americana gregaria. J. Exp. Biol 113, 269-.[Abstract/Free Full Text]

Nurnberger, A., Rapus, J., Eckert, M. and Penzlin, H (1993). Taurine-like immunoreactivity in octopaminergic neurones of thecockroach, Periplaneta americana (L.). Histochem 100, 285-.

Orchard, I., Lange, A. B., Cook, H. and Ramirez, J. M (1989). A subpopulation of dorsal unpaired median neurons in the blood-feeding insect Rhodnius prolixus displays serotonin-like immunoreactivity. J. Comp. Neurol 289, 118-.[Medline]

Orchard, I., Ramirez, J. M. and Lange, A. B (1993). A multifunctional role for octopamine in locust flight. Annu. Rev. Ent 38, 227-.

Pape, H. C (1996). Queer current and pacemaker: The hyperpolarization-activated cation current in neurons. Annu. Rev. Physiol 58, 299-.[Medline]

Penzlin, H (1989). Neuropeptides \320 occurrence and function in insects. Naturwissenschaften 76, 243-.[Medline]

Plotnikova, S. N (1969). Effector neurones with several axons in the ventral nerve cord of the Asian grasshopper Locusta migratoria. J. Evol. Biochem. Physiol 5, 276-.

Pollack, A. J., Ritzmann, R. E. and Westin, J (1988). Activation of DUM cell interneurons by ventral giant interneurons in the cockroach, Periplaneta americana. J. Neurobiol 19, 489-.[Medline]

Raymond, V. and Lapied, B (1999). Hyperpolarization-activated inward potassium and calcium-sensitive chloride currents in beating pacemaker insect neurosecretory cells (dorsal unpaired median neurons). Neuroscience 93, 1207-.[Medline]

Roeder, T (1999). Octopamine in invertebrates. Prog. Neurobiol 59, 533-.[Medline]

Rudy, B (1988). Diversity and ubiquity of K channels. Neuroscience 25, 729-.[Medline]

Sinakevitch, I. G., Geffard, M., Pelhate, M. and Lapied, B (1994). Octopamine-like immunoreactivity in the DUM neurons innervating the accessory gland of the male cockroach Periplaneta americana (L.). Cell Tissue Res 276, 15-.

Sinakevitch, I. G., Geffard, M., Pelhate, M. and Lapied, B (1996). Anatomy and targets of dorsal unpaired median neurones in the terminal abdominal ganglion of the male cockroach Periplaneta americana. J. Comp. Neurol 367, 147-.[Medline]

Smith, P. J. S. and Howes, E. A (1996). Long-term culture of fullydifferentiated adult insect neurons. J. Neurosci. Meth 69, 113-.[Medline]

Stankiewicz, M., Grolleau, F., Lapied, B., Borchani, M., El Ayeb, M. and Pelhate, M (1996). Bot IT2, a toxin paralytic to insects from the Buthus occitanus tunetanus venom modifying the activity of insect sodium channels. J. Insect Physiol 42, 397-.

Stevenson, P. A (1999). Colocalisation of taurine-with transmitter-immunoreactivities in the nervous system of the migratory locust. J. Comp. Neurol 404, 86-.[Medline]

Stevenson, P. A. and Sp\232rhase-Eichmann, U (1995). Localization of octopaminergic neurones in insects. Comp. Biochem. Physiol 110, 203-.

Swales, L. S. and Evans, P. D (1994). Distribution of myomodulin-like immunoreactivity in the adult and developing ventral nervous system of the locust Schistocerca gregaria. J. Comp. Neurol 343, 263-.[Medline]

Tanaka, Y. and Washio, H (1988). Morphological and physiological properties of the dorsal unpaired median neurons of the metathoracic ganglion. Comp. Biochem. Physiol 91, 37-.

Thompson, K. J. and Siegler, M. V. S (1991). Anatomy and physiology of spiking local and intersegmental interneurons in the median neuroblast lineage of the grasshopper. J. Comp. Neurol 305, 659-.[Medline]

Titmus, M. J. and Faber, D. S (1990). Axotomy-induced alterations in the electrophysiological characteristics of neurons. Prog. Neurobiol 35, 1-.[Medline]

Tribut, F., Lapied, B., Duval, A. and Pelhate, M (1991). A neosynthesis of sodium channels is involved in the evolution of the sodium current in isolated adult DUM neurons. Pflugers Arch 419, 665-.[Medline]

Triggle, D. J (1999). The pharmacology of ion channels: with particular reference to voltage-gated Ca2+channels. Eur. J. Pharmac 375, 311-.[Medline]

Washio, H. and Tanaka, Y (1992). Some effects of octopamine, proctolin and serotonin on dorsal unpaired median neurones of cockroach ( Periplaneta americana ) thoracic ganglia. J. Insect Physiol 38, 511-.

Watson, A. H. D (1984). The dorsal unpaired median neurons of the locust metathoracic ganglion: Neuronal structure and diversity and synapse distribution. J. Neurocytol 13, 303-.[Medline]

Wicher, D. and Penzlin, H (1994). Ca2+currents in cockroach neurones: properties and modulation by neurohormone D. NeuroReport 5, 1023-.[Medline]

Wicher, D. and Penzlin, H (1997). Ca2+currents in central insect neurons: Electrophysiological and pharmacological properties. J. Neurophysiol 77, 186-.[Abstract/Free Full Text]

Wicher, D. and Penzlin, H (1998). -Toxins affect Na+currents in neurosecretory insect neurons. Receptors & Channels 5, 355-.[Medline]

Wicher, D. and Reuter, G (1993). Neurohormone D increases the intracellular Ca2+level in cockroach neurones through a Cd2+-sensitive Ca2+influx. Neurosci. Lett 159, 13-.[Medline]




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