Odorant Representations Are Modulated by Intra- but Not Interglomerular Presynaptic Inhibition of Olfactory Sensory Neurons
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Matt Wachowiak | Adam S. Elias | Nicolás Pírez | J. McGann | M. Wachowiak | N. Pírez | Christina R. Muratore | John P. McGann | Melanie A. Gainey | Christina Muratore | A. S. Elias | Nicolás Pírez
[1] L. Cohen,et al. Presynaptic Inhibition of Primary Olfactory Afferents Mediated by Different Mechanisms in Lobster and Turtle , 1999, The Journal of Neuroscience.
[2] G. Westbrook,et al. Glomerulus-Specific Synchronization of Mitral Cells in the Olfactory Bulb , 2001, Neuron.
[3] T. Powell,et al. The neuropil of the periglomerular region of the olfactory bulb. , 1971, Journal of cell science.
[4] Peter Mombaerts,et al. Specificity of Glomerular Targeting by Olfactory Sensory Axons , 2002, The Journal of Neuroscience.
[5] M. Frerking,et al. GABAB Receptor-Mediated Presynaptic Inhibition Has History-Dependent Effects on Synaptic Transmission during Physiologically Relevant Spike Trains , 2003, The Journal of Neuroscience.
[6] M. T. Shipley,et al. Centre–surround inhibition among olfactory bulb glomeruli , 2003, Nature.
[7] Winfried Denk,et al. Functional organization of sensory input to the olfactory bulb glomerulus analyzed by two-photon calcium imaging , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[8] Gero Miesenböck,et al. Transmission of Olfactory Information between Three Populations of Neurons in the Antennal Lobe of the Fly , 2002, Neuron.
[9] G. Shepherd,et al. Analysis of Relations between NMDA Receptors and GABA Release at Olfactory Bulb Reciprocal Synapses , 2000, Neuron.
[10] J. Vincent,et al. Dopamine depresses synaptic inputs into the olfactory bulb. , 1999, Journal of neurophysiology.
[11] Richard Axel,et al. Visualizing an Olfactory Sensory Map , 1996, Cell.
[12] W. Precht. The synaptic organization of the brain G.M. Shepherd, Oxford University Press (1975). 364 pp., £3.80 (paperback) , 1976, Neuroscience.
[13] L. Trussell,et al. Minimizing Synaptic Depression by Control of Release Probability , 2001, The Journal of Neuroscience.
[14] M. T. Shipley,et al. Tonic and synaptically evoked presynaptic inhibition of sensory input to the rat olfactory bulb via GABA(B) heteroreceptors. , 2000, Journal of neurophysiology.
[15] A. Keller,et al. Functional Organization of Rat Olfactory Bulb Glomeruli Revealed by Optical Imaging , 1998, The Journal of Neuroscience.
[16] P. Duchamp-Viret,et al. GABAB-mediated action in the frog olfactory bulb makes odor responses more salient , 2000, Neuroscience.
[17] M. T. Shipley,et al. External Tufted Cells: A Major Excitatory Element That Coordinates Glomerular Activity , 2004, The Journal of Neuroscience.
[18] L. Cohen,et al. Interglomerular center-surround inhibition shapes odorant-evoked input to the mouse olfactory bulb in vivo. , 2006, Journal of neurophysiology.
[19] C. Greer,et al. Compartmental organization of the olfactory bulb glomerulus , 1999, The Journal of comparative neurology.
[20] Adam C. Puche,et al. Inhibition of Olfactory Receptor Neuron Input to Olfactory Bulb Glomeruli Mediated by Suppression of Presynaptic Calcium Influx , 2005 .
[21] Gordon M. Shepherd,et al. The Olfactory Bulb , 1988 .
[22] C. Stevens,et al. Three modes of synaptic vesicular recycling revealed by single-vesicle imaging , 2003, Nature.
[23] Z. Mainen,et al. Speed and accuracy of olfactory discrimination in the rat , 2003, Nature Neuroscience.
[24] J. Isaacson,et al. Intraglomerular inhibition: signaling mechanisms of an olfactory microcircuit , 2005, Nature Neuroscience.
[25] David E. Hornung,et al. A quantitative analysis of sniffing strategies in rats performing odor detection tasks , 1987, Physiology & Behavior.
[26] T. Kosaka,et al. Chemically defined neuron groups and their subpopulations in the glomerular layer of the rat main olfactory bulb—IV. Intraglomerular synapses of tyrosine hydroxylase-immunoreactive neurons , 2000, Neuroscience.
[27] M. Kavanaugh,et al. Flux coupling in a neuronal glutamate transporter , 1996, Nature.
[28] Peter Mombaerts,et al. Odorant Receptor Expression Defines Functional Units in the Mouse Olfactory System , 2002, The Journal of Neuroscience.
[29] Tom Misteli,et al. In vivo imaging. , 2003, Methods.
[30] G. Shepherd. The Synaptic Organization of the Brain , 1979 .
[31] M. T. Shipley,et al. Dopamine D2 receptor-mediated presynaptic inhibition of olfactory nerve terminals. , 2001, Journal of neurophysiology.
[32] J. Isaacson,et al. Olfactory Reciprocal Synapses: Dendritic Signaling in the CNS , 1998, Neuron.
[33] L. Franzen,et al. Rapid down‐regulation of tyrosine hydroxylase expression in the olfactory bulb of naris‐occluded adult rats , 1996, The Journal of comparative neurology.
[34] D. Jacobowitz,et al. Chemically defined neuron groups and their subpopulations in the glomerular layer of the rat main olfactory bulb , 1995, Neuroscience Research.
[35] G. Shepherd,et al. Short‐axon cells in the olfactory bulb: dendrodendritic synaptic interactions. , 1975, The Journal of physiology.
[36] Rainer W Friedrich,et al. Processing of Odor Mixtures in the Zebrafish Olfactory Bulb , 2004, The Journal of Neuroscience.
[37] T. A. Ryan,et al. Real-time measurements of vesicle-SNARE recycling in synapses of the central nervous system , 2000, Nature Cell Biology.
[38] Gero Miesenböck,et al. Visualizing secretion and synaptic transmission with pH-sensitive green fluorescent proteins , 1998, Nature.
[39] Matt Wachowiak,et al. In Vivo Imaging of Neuronal Activity by Targeted Expression of a Genetically Encoded Probe in the Mouse , 2004, Neuron.
[40] William J Tyler,et al. Synaptic vesicle recycling studied in transgenic mice expressing synaptopHluorin , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[41] O. Krishtal,et al. Rapid extracellular pH transients related to synaptic transmission in rat hippocampal slices , 1987, Brain Research.
[42] L. Cohen,et al. Representation of Odorants by Receptor Neuron Input to the Mouse Olfactory Bulb , 2001, Neuron.
[43] M. T. Shipley,et al. Olfactory Bulb Glomeruli: External Tufted Cells Intrinsically Burst at Theta Frequency and Are Entrained by Patterned Olfactory Input , 2004, The Journal of Neuroscience.
[44] Zev Balsen,et al. Sensory Neuron Signaling to the Brain: Properties of Transmitter Release from Olfactory Nerve Terminals , 2004, The Journal of Neuroscience.