Morgan RJ, Santhakumar V, Soltesz I. (2007). Modeling the dentate gyrus. Progress in brain research. 163 [PubMed]

See more from authors: Morgan RJ · Santhakumar V · Soltesz I

References and models cited by this paper

Acsády L, Kamondi A, Sík A, Freund T, Buzsáki G. (1998). GABAergic cells are the major postsynaptic targets of mossy fibers in the rat hippocampus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

Acsády L, Katona I, Martínez-Guijarro FJ, Buzsáki G, Freund TF. (2000). Unusual target selectivity of perisomatic inhibitory cells in the hilar region of the rat hippocampus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Amaral DG. (1978). A Golgi study of cell types in the hilar region of the hippocampus in the rat. The Journal of comparative neurology. 182 [PubMed]

Aradi I, Holmes WR. (1999). Role of multiple calcium and calcium-dependent conductances in regulation of hippocampal dentate granule cell excitability. Journal of computational neuroscience. 6 [PubMed]

Aradi I, Holmes WR. (1999). Active dendrites regulate spatio-temporal synaptic integration in hippocampal dentate granule cells Neurocomputing. 26

Babb TL, Pretorius JK, Kupfer WR, Brown WJ. (1988). Distribution of glutamate-decarboxylase-immunoreactive neurons and synapses in the rat and monkey hippocampus: light and electron microscopy. The Journal of comparative neurology. 278 [PubMed]

Bartos M, Vida I, Frotscher M, Geiger JR, Jonas P. (2001). Rapid signaling at inhibitory synapses in a dentate gyrus interneuron network. The Journal of neuroscience : the official journal of the Society for Neuroscience. 21 [PubMed]

Blasco-Ibáñez JM, Martínez-Guijarro FJ, Freund TF. (2000). Recurrent mossy fibers preferentially innervate parvalbumin-immunoreactive interneurons in the granule cell layer of the rat dentate gyrus. Neuroreport. 11 [PubMed]

Blümcke I et al. (2000). Loss of hilar mossy cells in Ammon's horn sclerosis. Epilepsia. 41 Suppl 6 [PubMed]

Boss BD, Peterson GM, Cowan WM. (1985). On the number of neurons in the dentate gyrus of the rat. Brain research. 338 [PubMed]

Buckmaster PS, Dudek FE. (1997). Network properties of the dentate gyrus in epileptic rats with hilar neuron loss and granule cell axon reorganization. Journal of neurophysiology. 77 [PubMed]

Buckmaster PS, Dudek FE. (1999). In vivo intracellular analysis of granule cell axon reorganization in epileptic rats. Journal of neurophysiology. 81 [PubMed]

Buckmaster PS, Jongen-Rêlo AL. (1999). Highly specific neuron loss preserves lateral inhibitory circuits in the dentate gyrus of kainate-induced epileptic rats. The Journal of neuroscience : the official journal of the Society for Neuroscience. 19 [PubMed]

Buckmaster PS, Schwartzkroin PA. (1994). Hippocampal mossy cell function: a speculative view. Hippocampus. 4 [PubMed]

Buckmaster PS, Strowbridge BW, Kunkel DD, Schmiege DL, Schwartzkroin PA. (1992). Mossy cell axonal projections to the dentate gyrus molecular layer in the rat hippocampal slice. Hippocampus. 2 [PubMed]

Buckmaster PS, Strowbridge BW, Schwartzkroin PA. (1993). A comparison of rat hippocampal mossy cells and CA3c pyramidal cells. Journal of neurophysiology. 70 [PubMed]

Buckmaster PS, Thind K. (2005). Quantifying routes of positive-feedback among granule cells in a model of temporal lobe epilepsy Epilepsia. 46

Buckmaster PS, Wenzel HJ, Kunkel DD, Schwartzkroin PA. (1996). Axon arbors and synaptic connections of hippocampal mossy cells in the rat in vivo. The Journal of comparative neurology. 366 [PubMed]

Buckmaster PS, Yamawaki R, Zhang GF. (2002). Axon arbors and synaptic connections of a vulnerable population of interneurons in the dentate gyrus in vivo. The Journal of comparative neurology. 445 [PubMed]

Buckmaster PS, Zhang GF, Yamawaki R. (2002). Axon sprouting in a model of temporal lobe epilepsy creates a predominantly excitatory feedback circuit. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Cavazos JE, Das I, Sutula TP. (1994). Neuronal loss induced in limbic pathways by kindling: evidence for induction of hippocampal sclerosis by repeated brief seizures. The Journal of neuroscience : the official journal of the Society for Neuroscience. 14 [PubMed]

Cavazos JE, Sutula TP. (1990). Progressive neuronal loss induced by kindling: a possible mechanism for mossy fiber synaptic reorganization and hippocampal sclerosis. Brain research. 527 [PubMed]

Ceranik K et al. (1997). A novel type of GABAergic interneuron connecting the input and the output regions of the hippocampus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 17 [PubMed]

Claiborne BJ, Amaral DG, Cowan WM. (1990). Quantitative, three-dimensional analysis of granule cell dendrites in the rat dentate gyrus. The Journal of comparative neurology. 302 [PubMed]

Cossart R et al. (2001). Dendritic but not somatic GABAergic inhibition is decreased in experimental epilepsy. Nature neuroscience. 4 [PubMed]

Desmond NL, Levy WB. (1985). Granule cell dendritic spine density in the rat hippocampus varies with spine shape and location. Neuroscience letters. 54 [PubMed]

Destexhe A, Rudolph M, Fellous JM, Sejnowski TJ. (2001). Fluctuating synaptic conductances recreate in vivo-like activity in neocortical neurons. Neuroscience. 107 [PubMed]

Dyhrfjeld-Johnsen J et al. (2007). Topological determinants of epileptogenesis in large-scale structural and functional models of the dentate gyrus derived from experimental data. Journal of neurophysiology. 97 [PubMed]

Freund TF, Buzsáki G. (1996). Interneurons of the hippocampus. Hippocampus. 6 [PubMed]

Frotscher M, Seress L, Schwerdtfeger WK, Buhl E. (1991). The mossy cells of the fascia dentata: a comparative study of their fine structure and synaptic connections in rodents and primates. The Journal of comparative neurology. 312 [PubMed]

Gaarskjaer FB. (1978). Organization of the mossy fiber system of the rat studied in extended hippocampi. I. Terminal area related to number of granule and pyramidal cells. The Journal of comparative neurology. 178 [PubMed]

Gabriel S et al. (2004). Stimulus and potassium-induced epileptiform activity in the human dentate gyrus from patients with and without hippocampal sclerosis. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Geiger JR, Lübke J, Roth A, Frotscher M, Jonas P. (1997). Submillisecond AMPA receptor-mediated signaling at a principal neuron-interneuron synapse. Neuron. 18 [PubMed]

Gorter JA, van Vliet EA, Aronica E, Lopes da Silva FH. (2001). Progression of spontaneous seizures after status epilepticus is associated with mossy fibre sprouting and extensive bilateral loss of hilar parvalbumin and somatostatin-immunoreactive neurons. The European journal of neuroscience. 13 [PubMed]

Gulyás AI, Hájos N, Freund TF. (1996). Interneurons containing calretinin are specialized to control other interneurons in the rat hippocampus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 16 [PubMed]

Gulyás AI, Miettinen R, Jacobowitz DM, Freund TF. (1992). Calretinin is present in non-pyramidal cells of the rat hippocampus--I. A new type of neuron specifically associated with the mossy fibre system. Neuroscience. 48 [PubMed]

Halasy K, Somogyi P. (1993). Subdivisions in the multiple GABAergic innervation of granule cells in the dentate gyrus of the rat hippocampus. The European journal of neuroscience. 5 [PubMed]

Han ZS, Buhl EH, Lörinczi Z, Somogyi P. (1993). A high degree of spatial selectivity in the axonal and dendritic domains of physiologically identified local-circuit neurons in the dentate gyrus of the rat hippocampus. The European journal of neuroscience. 5 [PubMed]

Heinemann U et al. (1992). The dentate gyrus as a regulated gate for the propagation of epileptiform activity. Epilepsy research. Supplement. 7 [PubMed]

Hines ML, Carnevale NT. (2006). The NEURON Book.

Howard A, Tamas G, Soltesz I. (2005). Lighting the chandelier: new vistas for axo-axonic cells. Trends in neurosciences. 28 [PubMed]

Howard AL, Neu A, Morgan RJ, Echegoyen JC, Soltesz I. (2007). Opposing modifications in intrinsic currents and synaptic inputs in post-traumatic mossy cells: evidence for single-cell homeostasis in a hyperexcitable network. Journal of neurophysiology. 97 [PubMed]

Ishizuka N, Cowan WM, Amaral DG. (1995). A quantitative analysis of the dendritic organization of pyramidal cells in the rat hippocampus. The Journal of comparative neurology. 362 [PubMed]

Katona I, Acsády L, Freund TF. (1999). Postsynaptic targets of somatostatin-immunoreactive interneurons in the rat hippocampus. Neuroscience. 88 [PubMed]

Kneisler TB, Dingledine R. (1995). Synaptic input from CA3 pyramidal cells to dentate basket cells in rat hippocampus. The Journal of physiology. 487 [PubMed]

Leite JP et al. (1996). Neuron loss, mossy fiber sprouting, and interictal spikes after intrahippocampal kainate in developing rats. Epilepsy research. 26 [PubMed]

Li XG, Somogyi P, Tepper JM, Buzsáki G. (1992). Axonal and dendritic arborization of an intracellularly labeled chandelier cell in the CA1 region of rat hippocampus. Experimental brain research. 90 [PubMed]

Lothman EW, Stringer JL, Bertram EH. (1992). The dentate gyrus as a control point for seizures in the hippocampus and beyond. Epilepsy research. Supplement. 7 [PubMed]

Lytton WW, Hellman KM, Sutula TP. (1998). Computer models of hippocampal circuit changes of the kindling model of epilepsy. Artificial intelligence in medicine. 13 [PubMed]

Lübke J, Frotscher M, Spruston N. (1998). Specialized electrophysiological properties of anatomically identified neurons in the hilar region of the rat fascia dentata. Journal of neurophysiology. 79 [PubMed]

Mathern GW et al. (1997). In contrast to kindled seizures, the frequency of spontaneous epilepsy in the limbic status model correlates with greater aberrant fascia dentata excitatory and inhibitory axon sprouting, and increased staining for N-methyl-D-aspartate, AMPA and GABA(A) receptors. Neuroscience. 77 [PubMed]

Milo R et al. (2002). Network motifs: simple building blocks of complex networks. Science (New York, N.Y.). 298 [PubMed]

Netoff TI, Clewley R, Arno S, Keck T, White JA. (2004). Epilepsy in small-world networks. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Nomura T et al. (1997). Distribution of nonprincipal neurons in the rat hippocampus, with special reference to their dorsoventral difference. Brain research. 751 [PubMed]

Nomura T et al. (1997). Laminar distribution of non-principal neurons in the rat hippocampus, with special reference to their compositional difference among layers. Brain research. 764 [PubMed]

Patton PE, McNaughton B. (1995). Connection matrix of the hippocampal formation: I. The dentate gyrus. Hippocampus. 5 [PubMed]

Rafiq A, Zhang YF, DeLorenzo RJ, Coulter DA. (1995). Long-duration self-sustained epileptiform activity in the hippocampal-parahippocampal slice: a model of status epilepticus. Journal of neurophysiology. 74 [PubMed]

Rall W et al. (1992). Matching dendritic neuron models to experimental data. Physiological reviews. 72 [PubMed]

Ratzliff Ad, Howard AL, Santhakumar V, Osapay I, Soltesz I. (2004). Rapid deletion of mossy cells does not result in a hyperexcitable dentate gyrus: implications for epileptogenesis. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Reigl M, Alon U, Chklovskii DB. (2004). Search for computational modules in the C. elegans brain. BMC biology. 2 [PubMed]

Ribak CE, Seress L, Amaral DG. (1985). The development, ultrastructure and synaptic connections of the mossy cells of the dentate gyrus. Journal of neurocytology. 14 [PubMed]

Roxin A, Riecke H, Solla SA. (2004). Self-sustained activity in a small-world network of excitable neurons. Physical review letters. 92 [PubMed]

Santhakumar V, Aradi I, Soltesz I. (2005). Role of mossy fiber sprouting and mossy cell loss in hyperexcitability: a network model of the dentate gyrus incorporating cell types and axonal topography. Journal of neurophysiology. 93 [PubMed]

Santhakumar V et al. (2000). Granule cell hyperexcitability in the early post-traumatic rat dentate gyrus: the 'irritable mossy cell' hypothesis. The Journal of physiology. 524 Pt 1 [PubMed]

Santhakumar V, Ratzliff AD, Jeng J, Toth Z, Soltesz I. (2001). Long-term hyperexcitability in the hippocampus after experimental head trauma. Annals of neurology. 50 [PubMed]

Santhakumar V, Soltesz I. (2004). Plasticity of interneuronal species diversity and parameter variance in neurological diseases. Trends in neurosciences. 27 [PubMed]

Scharfman HE. (1991). Dentate hilar cells with dendrites in the molecular layer have lower thresholds for synaptic activation by perforant path than granule cells. The Journal of neuroscience : the official journal of the Society for Neuroscience. 11 [PubMed]

Sik A, Penttonen M, Buzsáki G. (1997). Interneurons in the hippocampal dentate gyrus: an in vivo intracellular study. The European journal of neuroscience. 9 [PubMed]

Soltesz I, Morgan RJ. (2006). American epilepsy society meeting abstract Epilepsia. 47

Song S, Sjöström PJ, Reigl M, Nelson S, Chklovskii DB. (2005). Highly nonrandom features of synaptic connectivity in local cortical circuits. PLoS biology. 3 [PubMed]

Spigelman I et al. (1998). Dentate granule cells form novel basal dendrites in a rat model of temporal lobe epilepsy. Neuroscience. 86 [PubMed]

Sporns O, Kötter R. (2004). Motifs in brain networks. PLoS biology. 2 [PubMed]

Vida I, Bartos M, Jonas P. (2006). Shunting inhibition improves robustness of gamma oscillations in hippocampal interneuron networks by homogenizing firing rates. Neuron. 49 [PubMed]

Watts DJ, Strogatz SH. (1998). Collective dynamics of 'small-world' networks. Nature. 393 [PubMed]

Wenzel HJ, Buckmaster PS, Anderson NL, Wenzel ME, Schwartzkroin PA. (1997). Ultrastructural localization of neurotransmitter immunoreactivity in mossy cell axons and their synaptic targets in the rat dentate gyrus. Hippocampus. 7 [PubMed]

West MJ. (1990). Stereological studies of the hippocampus: a comparison of the hippocampal subdivisions of diverse species including hedgehogs, laboratory rodents, wild mice and men. Progress in brain research. 83 [PubMed]

Woodson W, Nitecka L, Ben-Ari Y. (1989). Organization of the GABAergic system in the rat hippocampal formation: a quantitative immunocytochemical study. The Journal of comparative neurology. 280 [PubMed]

Yoshimura Y, Callaway EM. (2005). Fine-scale specificity of cortical networks depends on inhibitory cell type and connectivity. Nature neuroscience. 8 [PubMed]

Yoshimura Y, Dantzker JL, Callaway EM. (2005). Excitatory cortical neurons form fine-scale functional networks. Nature. 433 [PubMed]

Zappone CA, Sloviter RS. (2004). Translamellar disinhibition in the rat hippocampal dentate gyrus after seizure-induced degeneration of vulnerable hilar neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

van Vliet EA, Aronica E, Tolner EA, Lopes da Silva FH, Gorter JA. (2004). Progression of temporal lobe epilepsy in the rat is associated with immunocytochemical changes in inhibitory interneurons in specific regions of the hippocampal formation. Experimental neurology. 187 [PubMed]

References and models that cite this paper

Rindner DJ, Proddutur A, Lur G. (2022). Cell-type specific integration of feedforward and feedback synaptic inputs in the posterior parietal cortex Neuron. 110 [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.