Olfactory Mitral cell: AP initiation modes (Chen et al 2002)


Chen WR, Shen GY, Shepherd GM, Hines ML, Midtgaard J. (2002). Multiple modes of action potential initiation and propagation in mitral cell primary dendrite. Journal of neurophysiology. 88 [PubMed]

See more from authors: Chen WR · Shen GY · Shepherd GM · Hines ML · Midtgaard J

References and models cited by this paper

ANDERSEN P. (1960). Interhippocampal impulses. II. Apical dendritic activation of CAI neurons. Acta physiologica Scandinavica. 48 [PubMed]

Allison AC. (1952). The morphology of the olfactory system in the vertebrates. Biol Rev. 28

Antic S, Wuskell JP, Loew L, Zecevic D. (2000). Functional profile of the giant metacerebral neuron of Helix aspersa: temporal and spatial dynamics of electrical activity in situ. The Journal of physiology. 527 Pt 1 [PubMed]

Berkowicz DA, Trombley PQ, Shepherd GM. (1994). Evidence for glutamate as the olfactory receptor cell neurotransmitter. Journal of neurophysiology. 71 [PubMed]

Bischofberger J, Jonas P. (1997). Action potential propagation into the presynaptic dendrites of rat mitral cells. The Journal of physiology. 504 ( Pt 2) [PubMed]

Cajal R. (1911). Histologie Du Systeme Nerveux De L Homme Et Des Vertebres 2. 2

Chen WR, Midtgaard J, Shepherd GM. (1997). Forward and backward propagation of dendritic impulses and their synaptic control in mitral cells. Science (New York, N.Y.). 278 [PubMed]

Chen WR, Shepherd GM. (1997). Membrane and synaptic properties of mitral cells in slices of rat olfactory bulb. Brain research. 745 [PubMed]

ECCLES JC, LIBET B, YOUNG RR. (1958). The behaviour of chromatolysed motoneurones studied by intracellular recording. The Journal of physiology. 143 [PubMed]

EDWARDS C, OTTOSON D. (1958). The site of impulse initiation in a nerve cell of a crustacean stretch receptor. The Journal of physiology. 143 [PubMed]

Eccles JC. (1957). The Physiology Of Nerve Cells.

Ennis M, Zimmer LA, Shipley MT. (1996). Olfactory nerve stimulation activates rat mitral cells via NMDA and non-NMDA receptors in vitro. Neuroreport. 7 [PubMed]

FUORTES MG, FRANK K, BECKER MC. (1957). Steps in the production of motoneuron spikes. The Journal of general physiology. 40 [PubMed]

GASSER HS. (1956). Olfactory nerve fibers. The Journal of general physiology. 39 [PubMed]

Golding NL, Spruston N. (1998). Dendritic sodium spikes are variable triggers of axonal action potentials in hippocampal CA1 pyramidal neurons. Neuron. 21 [PubMed]

Herreras O. (1990). Propagating dendritic action potential mediates synaptic transmission in CA1 pyramidal cells in situ. Journal of neurophysiology. 64 [PubMed]

Hines ML, Carnevale NT. (1997). The NEURON simulation environment. Neural computation. 9 [PubMed]

Hines ML, Shen GY, Chen WR, Midtgaard J, Shepherd GM. (2000). Analysis of double spikes in mitral cell primary dendrite. Achems Proc. 22

Häusser M, Spruston N, Stuart GJ. (2000). Diversity and dynamics of dendritic signaling. Science (New York, N.Y.). 290 [PubMed]

Jahr CE, Nicoll RA. (1982). An intracellular analysis of dendrodendritic inhibition in the turtle in vitro olfactory bulb. The Journal of physiology. 326 [PubMed]

Larkum ME, Rioult MG, Lüscher HR. (1996). Propagation of action potentials in the dendrites of neurons from rat spinal cord slice cultures. Journal of neurophysiology. 75 [PubMed]

Larkum ME, Zhu JJ, Sakmann B. (1999). A new cellular mechanism for coupling inputs arriving at different cortical layers. Nature. 398 [PubMed]

Magee JC. (1999). Voltage-gated ion channels in dendrites. Dendrites.

Magee JC, Johnston D. (1995). Characterization of single voltage-gated Na+ and Ca2+ channels in apical dendrites of rat CA1 pyramidal neurons. The Journal of physiology. 487 [PubMed]

Martina M, Vida I, Jonas P. (2000). Distal initiation and active propagation of action potentials in interneuron dendrites. Science (New York, N.Y.). 287 [PubMed]

Mombaerts P et al. (1996). Visualizing an olfactory sensory map. Cell. 87 [PubMed]

Mori K. (1987). Membrane and synaptic properties of identified neurons in the olfactory bulb. Progress in neurobiology. 29 [PubMed]

Mori K, Nowycky MC, Shepherd GM. (1982). Impulse activity in presynaptic dendrites: analysis of mitral cells in the isolated turtle olfactory bulb. The Journal of neuroscience : the official journal of the Society for Neuroscience. 2 [PubMed]

Pinching AJ, Powell TP. (1971). The neuropil of the glomeruli of the olfactory bulb. Journal of cell science. 9 [PubMed]

Price JL, Powell TP. (1970). The mitral and short axon cells of the olfactory bulb. Journal of cell science. 7 [PubMed]

RALL W. (1959). Branching dendritic trees and motoneuron membrane resistivity. Experimental neurology. 1 [PubMed]

Rall W, Shepherd GM. (1968). Theoretical reconstruction of field potentials and dendrodendritic synaptic interactions in olfactory bulb. Journal of neurophysiology. 31 [PubMed]

Ramon y Cajal S. (1911). Histologie du Systeme Nerveux de lHomme et des Vertebrates. .

Rapp M, Yarom Y, Segev I. (1996). Modeling back propagating action potential in weakly excitable dendrites of neocortical pyramidal cells. Proceedings of the National Academy of Sciences of the United States of America. 93 [PubMed]

Ressler KJ, Sullivan SL, Buck LB. (1994). Information coding in the olfactory system: evidence for a stereotyped and highly organized epitope map in the olfactory bulb. Cell. 79 [PubMed]

Rice ME, Cragg SJ, Greenfield SA. (1997). Characteristics of electrically evoked somatodendritic dopamine release in substantia nigra and ventral tegmental area in vitro. Journal of neurophysiology. 77 [PubMed]

Shen GY, Chen WR, Midtgaard J, Shepherd GM, Hines ML. (1999). Computational analysis of action potential initiation in mitral cell soma and dendrites based on dual patch recordings. Journal of neurophysiology. 82 [PubMed]

Simmons ML, Terman GW, Gibbs SM, Chavkin C. (1995). L-type calcium channels mediate dynorphin neuropeptide release from dendrites but not axons of hippocampal granule cells. Neuron. 14 [PubMed]

Spencer WA, Kandel ER. (1961). ELECTROPHYSIOLOGY OF HIPPOCAMPAL NEURONS: IV. FAST PREPOTENTIALS. Journal of neurophysiology. 24 [PubMed]

Spruston N, Hausser M, Stuart G. (1999). Dendrites..

Stuart G, Schiller J, Sakmann B. (1997). Action potential initiation and propagation in rat neocortical pyramidal neurons. The Journal of physiology. 505 ( Pt 3) [PubMed]

Stuart GJ, Sakmann B. (1994). Active propagation of somatic action potentials into neocortical pyramidal cell dendrites. Nature. 367 [PubMed]

Traub RD, Miles R. (1991). Multiple modes of neuronal population activity emerge after modifying specific synapses in a model of the CA3 region of the hippocampus. Annals of the New York Academy of Sciences. 627 [PubMed]

Turner RW, Meyers DE, Richardson TL, Barker JL. (1991). The site for initiation of action potential discharge over the somatodendritic axis of rat hippocampal CA1 pyramidal neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Vassar R et al. (1994). Topographic organization of sensory projections to the olfactory bulb. Cell. 79 [PubMed]

Velte TJ, Masland RH. (1999). Action potentials in the dendrites of retinal ganglion cells. Journal of neurophysiology. 81 [PubMed]

White EL. (1973). Synaptic organization of the mammalian olfactory glomerulus: new findings including an intraspecific variation. Brain research. 60 [PubMed]

Williams SR, Stuart GJ. (2000). Action potential backpropagation and somato-dendritic distribution of ion channels in thalamocortical neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Xiong W, Chen WR. (2002). Dynamic gating of spike propagation in the mitral cell lateral dendrites. Neuron. 34 [PubMed]

Zilberter Y. (2000). Dendritic release of glutamate suppresses synaptic inhibition of pyramidal neurons in rat neocortex. The Journal of physiology. 528 [PubMed]

Zilberter Y, Kaiser KM, Sakmann B. (1999). Dendritic GABA release depresses excitatory transmission between layer 2/3 pyramidal and bitufted neurons in rat neocortex. Neuron. 24 [PubMed]

References and models that cite this paper

Carnevale NT, Hines M. (2003). Personal Communication of NEURON bibliography .

Carnevale NT, Morse TM. (1996). Research reports that have used NEURON Web published citations at the NEURON website.

Cavarretta F et al. (2018). Parallel odor processing by mitral and middle tufted cells in the olfactory bulb. Scientific reports. 8 [PubMed]

Cleland TA, Sethupathy P. (2006). Non-topographical contrast enhancement in the olfactory bulb. BMC neuroscience. 7 [PubMed]

David F, Linster C, Cleland TA. (2008). Lateral dendritic shunt inhibition can regularize mitral cell spike patterning. Journal of computational neuroscience. 25 [PubMed]

Djurisic M, Antic S, Chen WR, Zecevic D. (2004). Voltage imaging from dendrites of mitral cells: EPSP attenuation and spike trigger zones. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Gilra A, Bhalla US. (2015). Bulbar microcircuit model predicts connectivity and roles of interneurons in odor coding. PloS one. 10 [PubMed]

Keren N, Peled N, Korngreen A. (2005). Constraining compartmental models using multiple voltage recordings and genetic algorithms. Journal of neurophysiology. 94 [PubMed]

Maia PD, Kutz JN. (2014). Compromised axonal functionality after neurodegeneration, concussion and/or traumatic brain injury. Journal of computational neuroscience. 37 [PubMed]

McIntyre AB, Cleland TA. (2016). Biophysical constraints on lateral inhibition in the olfactory bulb. Journal of neurophysiology. 115 [PubMed]

Migliore M, Cavarretta F, Hines ML, Shepherd GM. (2014). Distributed organization of a brain microcircuit analyzed by three-dimensional modeling: the olfactory bulb. Frontiers in computational neuroscience. 8 [PubMed]

Migliore M, Hines ML, McTavish TS, Shepherd GM. (2010). Functional roles of distributed synaptic clusters in the mitral-granule cell network of the olfactory bulb. Frontiers in integrative neuroscience. 4 [PubMed]

Migliore M, Hines ML, Shepherd GM. (2005). The role of distal dendritic gap junctions in synchronization of mitral cell axonal output. Journal of computational neuroscience. 18 [PubMed]

Migliore M, Shepherd GM. (2008). Dendritic action potentials connect distributed dendrodendritic microcircuits. Journal of computational neuroscience. 24 [PubMed]

O'Connor S, Angelo K, Jacob TJ. (2012). Burst firing versus synchrony in a gap junction connected olfactory bulb mitral cell network model Frontiers in computational neuroscience. 6 [PubMed]

Simões-de-Souza FM, Antunes G, Roque AC. (2014). Electrical responses of three classes of granule cells of the olfactory bulb to synaptic inputs in different dendritic locations. Frontiers in computational neuroscience. 8 [PubMed]

Yu Y et al. (2013). Sparse distributed representation of odors in a large-scale olfactory bulb circuit. PLoS computational biology. 9 [PubMed]

This website requires cookies and limited processing of your personal data in order to function. By continuing to browse or otherwise use this site, you are agreeing to this use. See our Privacy policy and how to cite and terms of use.