References and models cited by this paper | References and models that cite this paper | |||||||||||||
Aldridge JW, Gilman S (1991) The temporal structure of spike trains in the primate basal ganglia: afferent regulation of bursting demonstrated with precentral cerebral cortical ablation. Brain Res 543:123-38 [PubMed] Alexander ME, Wickens JR (1993) Analysis of striatal dynamics: the existence of two modes of behaviour. J Theor Biol 163:413-38 [Journal] [PubMed] Amari S (1974) A method of statistical neurodynamics. Kybernetik 14:201-15 [PubMed] Bar-Gad I, Bergman H (2001) Stepping out of the box: information processing in the neural networks of the basal ganglia. Curr Opin Neurobiol 11:689-95 [PubMed] Beiser DG, Houk JC (1998) Model of cortical-basal ganglionic processing: encoding the serial order of sensory events. J Neurophysiol 79:3168-88 [Journal] [PubMed] Ben-Ari Y (2002) Excitatory actions of gaba during development: the nature of the nurture. Nat Rev Neurosci 3:728-39 [Journal] [PubMed] Bolam JP, Clarke DJ, Smith AD, Somogyi P (1983) A type of aspiny neuron in the rat neostriatum accumulates [3H]gamma-aminobutyric acid: combination of Golgi-staining, autoradiography, and electron microscopy. J Comp Neurol 213:121-34 [Journal] [PubMed] Bolam JP, Hanley JJ, Booth PA, Bevan MD (2000) Synaptic organisation of the basal ganglia. J Anat 196 ( Pt 4):527-42 [PubMed] Bolam JP, Izzo PN (1988) The postsynaptic targets of substance P-immunoreactive terminals in the rat neostriatum with particular reference to identified spiny striatonigral neurons. Exp Brain Res 70:361-77 [PubMed] Cajal R (1911) Histologie Du Systeme Nerveux De L Homme Et Des Vertebres 2 Calabresi P, Pisani A, Mercuri NB, Bernardi G (1994) Post-receptor mechanisms underlying striatal long-term depression. J Neurosci 14:4871-81 [PubMed] Cepeda C, Walsh JP, Hull CD, Howard SG, Buchwald NA, Levine MS (1989) Dye-coupling in the neostriatum of the rat: I. Modulation by dopamine-depleting lesions. Synapse 4:229-37 [Journal] [PubMed] Chang HT, Wilson CJ, Kitai ST (1981) Single neostriatal efferent axons in the globus pallidus: a light and electron microscopic study. Science 213:915-8 [PubMed] Connolly CI, Burns JB (1993) A model for the functioning of the striatum. Biol Cybern 68:535-44 [PubMed] Czubayko U, Plenz D (2002) Fast synaptic transmission between striatal spiny projection neurons. Proc Natl Acad Sci U S A 99:15764-9 [Journal] [PubMed] Czubayko U, Plenz D (2002) Time course, short-term plasticity, and dopamine-dependency of synaptic transmission between striatal spiny projection neurons. 28.164 Soc Neurosci Abstr Delgado A, Sierra A, Querejeta E, Valdiosera RF, Aceves J (2000) Inhibitory control of the GABAergic transmission in the rat neostriatum by D2 dopamine receptors. Neuroscience 95:1043-8 [PubMed] DeLong MR (1973) Putamen: activity of single units during slow and rapid arm movements. Science 179:1240-2 [PubMed] Fitzpatrick JS, Akopian G, Walsh JP (2001) Short-term plasticity at inhibitory synapses in rat striatum and its effects on striatal output. J Neurophysiol 85:2088-99 [Journal] [PubMed] Fujiyama F, Fritschy JM, Stephenson FA, Bolam JP (2000) Synaptic localization of GABA(A) receptor subunits in the striatum of the rat. J Comp Neurol 416:158-72 [PubMed] Fukai T, Tanaka S (1997) A simple neural network exhibiting selective activation of neuronal ensembles: from winner-take-all to winners-share-all. Neural Comput 9:77-97 [PubMed] Furman GG (1965) Comparison of models for subtractive and shunting lateral-inhibition in receptor-neuron fields. Kybernetik 2:257-74 [PubMed] Gerfen CR, Keefe KA, Gauda EB (1995) D1 and D2 dopamine receptor function in the striatum: coactivation of D1- and D2-dopamine receptors on separate populations of neurons results in potentiated immediate early gene response in D1-containing neurons. J Neurosci 15:8167-76 [PubMed] Gerfen CR, Wilson CJ (1996) The basal ganglia. Handbook of Chemical Neuroanatomy, Swanson LW:Et Al, ed. pp.371 Groves PM (1983) A theory of the functional organization of the neostriatum and the neostriatal control of voluntary movement. Brain Res 286:109-32 [PubMed] Gulledge AT, Stuart GJ (2003) Excitatory actions of GABA in the cortex. Neuron 37:299-309 [PubMed] Gupta A, Wang Y, Markram H (2000) Organizing principles for a diversity of GABAergic interneurons and synapses in the neocortex. Science 287:273-8 [PubMed] Guzman JN, Et_al (2002) Differential presynaptic modulation of inhibitory inputs to neostriatal projection neurons: dopamine modulates inputs from spiny axon collaterals but not from interneurons. 28.164 Soc Neurosci Abstr Harsing LG, Zigmond MJ (1997) Influence of dopamine on GABA release in striatum: evidence for D1-D2 interactions and non-synaptic influences. Neuroscience 77:419-29 [PubMed] Hartline HK (1969) Visual receptors and retinal interaction. Science 164:270-8 [PubMed] Hikosaka O, Sakamoto M, Usui S (1989) Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements. J Neurophysiol 61:780-98 [Journal] [PubMed] Jaeger D, Kita H, Wilson CJ (1994) Surround inhibition among projection neurons is weak or nonexistent in the rat neostriatum. J Neurophysiol 72:2555-8 [Journal] [PubMed] Jog MS, Kubota Y, Connolly CI, Hillegaart V, Graybiel AM (1999) Building neural representations of habits. Science 286:1745-9 [PubMed] Kawaguchi Y (1993) Physiological, morphological, and histochemical characterization of three classes of interneurons in rat neostriatum. J Neurosci 13:4908-23 [PubMed] Kawaguchi Y, Wilson CJ, Augood SJ, Emson PC (1995) Striatal interneurones: chemical, physiological and morphological characterization. Trends Neurosci 18:527-35 [PubMed] Kemp JM, Powell TP (1970) The cortico-striate projection in the monkey. Brain 93:525-46 [PubMed] Kerr JN, Plenz D (2002) Dendritic calcium encodes striatal neuron output during up-states. J Neurosci 22:1499-512 [PubMed] Kerr JN, Wickens JR (2001) Dopamine D-1/D-5 receptor activation is required for long-term potentiation in the rat neostriatum in vitro. J Neurophysiol 85:117-24 [Journal] [PubMed] Kita H (1993) GABAergic circuits of the Striatum. Chemical Signaling in the Basal Ganglia., Arbuthnott GW:Emson PC, ed. pp.51 Kita H (1996) Glutamatergic and GABAergic postsynaptic responses of striatal spiny neurons to intrastriatal and cortical stimulation recorded in slice preparations. Neuroscience 70:925-40 [PubMed] Kita T, Kita H, Kitai ST (1985) Local stimulation induced GABAergic response in rat striatal slice preparations: intracellular recordings on QX-314 injected neurons. Brain Res 360:304-10 [PubMed] Koós T, Tepper JM (1999) Inhibitory control of neostriatal projection neurons by GABAergic interneurons. Nat Neurosci 2:467-72 [Journal] [PubMed] Lytton WW, Sejnowski TJ (1991) Simulations of cortical pyramidal neurons synchronized by inhibitory interneurons. J Neurophysiol 66:1059-79 [Journal] [PubMed] McBain CJ, Fisahn A (2001) Interneurons unbound. Nat Rev Neurosci 2:11-23 [Journal] [PubMed] Mercuri NB, Calabresi P, Stefani A, Stratta F, Bernardi G (1991) GABA depolarizes neurons in the rat striatum: an in vivo study. Synapse 8:38-40 [Journal] [PubMed] Misgeld U, Wagner A, Ohno T (1982) Depolarizing IPSPs and Depolarization by GABA of rat neostriatum cells in vitro. Exp Brain Res 45:108-14 [PubMed] Nisenbaum ES, Wilson CJ (1995) Potassium currents responsible for inward and outward rectification in rat neostriatal spiny projection neurons. J Neurosci 15:4449-63 [PubMed] O'Donnell P, Grace AA (1993) Dopaminergic modulation of dye coupling between neurons in the core and shell regions of the nucleus accumbens. J Neurosci 13:3456-71 [PubMed] O'Reilly RC (2001) Generalization in interactive networks: the benefits of inhibitory competition and Hebbian learning. Neural Comput 13:1199-241 [PubMed] Oertel WH, Mugnaini E (1984) Immunocytochemical studies of GABAergic neurons in rat basal ganglia and their relations to other neuronal systems. Neurosci Lett 47:233-8 [PubMed] Onn SP, Grace AA (1994) Dye coupling between rat striatal neurons recorded in vivo: compartmental organization and modulation by dopamine. J Neurophysiol 71:1917-34 [Journal] [PubMed] Oorschot DE (1996) Total number of neurons in the neostriatal, pallidal, subthalamic, and substantia nigral nuclei of the rat basal ganglia: a stereological study using the cavalieri and optical disector methods. J Comp Neurol 366:580-99 [Journal] [PubMed] Oorschot DE, Et_al (2002) Local connectivity between striatal spiny projection neurons: a re-evaluation. The Basal Ganglia, Nicholson AJ:Faull RL, ed. pp.421 Owens DF, Kriegstein AR (2002) Is there more to GABA than synaptic inhibition? Nat Rev Neurosci 3:715-27 [Journal] [PubMed] Plenz D, Et al (1996) Basal ganglia control of sequential activity in the cerebral cortex: a model. Computational Neuroscience, Bower JM, ed. pp.397 Plenz D, Kitai ST (1998) Up and down states in striatal medium spiny neurons simultaneously recorded with spontaneous activity in fast-spiking interneurons studied in cortex-striatum-substantia nigra organotypic cultures. J Neurosci 18:266-83 [PubMed] Plenz D, Kitai ST (2000) Adaptive classification of cortical input to the striatum by competitive learning. Brain Dynamics and the Striatal Complex, Miller R:Wickens JR, ed. pp.165 Preston RJ, Bishop GA, Kitai ST (1980) Medium spiny neuron projection from the rat striatum: an intracellular horseradish peroxidase study. Brain Res 183:253-63 [PubMed] Reyes A, Lujan R, Rozov A, Burnashev N, Somogyi P, Sakmann B (1998) Target-cell-specific facilitation and depression in neocortical circuits. Nat Neurosci 1:279-85 [Journal] [PubMed] Somogyi P, Bolam JP, Smith AD (1981) Monosynaptic cortical input and local axon collaterals of identified striatonigral neurons. A light and electron microscopic study using the Golgi-peroxidase transport-degeneration procedure. J Comp Neurol 195:567-84 [Journal] [PubMed] Stuart GJ, Häusser M (2001) Dendritic coincidence detection of EPSPs and action potentials. Nat Neurosci 4:63-71 [Journal] [PubMed] Suri RE, Schultz W (1998) Learning of sequential movements by neural network model with dopamine-like reinforcement signal. Exp Brain Res 121:350-4 [PubMed] Suri RE, Schultz W (1999) A neural network model with dopamine-like reinforcement signal that learns a spatial delayed response task. Neuroscience 91:871-90 [PubMed] Thomson AM (2000) Molecular frequency filters at central synapses. Prog Neurobiol 62:159-96 [PubMed] Thomson AM (2000) Facilitation, augmentation and potentiation at central synapses. Trends Neurosci 23:305-12 [PubMed] Tunstall MJ, Oorschot DE, Kean A, Wickens JR (2002) Inhibitory interactions between spiny projection neurons in the rat striatum. J Neurophysiol 88:1263-9 [Journal] [PubMed] VARJU D (1962) [Comparison of 2 models for lateral inhibition] Kybernetik 1:200-8 Vogt C, Vogt O (1920) Zur Lehre der Erkrankungen des striaren Systems. J Psychol Neurol 25:627-846 von Seelen W (1968) [Information processes in homogenous networks of neuron models]. Kybernetik 5:133-48 [PubMed] Walsh JP, Cepeda C, Hull CD, Fisher RS, Levine MS, Buchwald NA (1989) Dye-coupling in the neostriatum of the rat: II. Decreased coupling between neurons during development. Synapse 4:238-47 [Journal] [PubMed] Wickens J (1990) Striatal dopamine in motor activation and reward-mediated learning: steps towards a unifying model. J Neural Transm Gen Sect 80:9-31 [PubMed] Wickens JR (2003) Surround inhibition in the basal ganglia. The Basal Ganglia, DeLong MR:Graybiel AM, ed. Wickens JR, Alexander ME, Miller R (1991) Two dynamic modes of striatal function under dopaminergic-cholinergic control: simulation and analysis of a model. Synapse 8:1-12 [Journal] [PubMed] Wickens JR, Arbuthnott GW (1993) The corticostriatal system on computer simulation: an intermediate mechanism for sequencing of actions. Prog Brain Res 99:325-39 [PubMed] Wickens JR, Kotter R, Alexander ME (1995) Effects of local connectivity on striatal function: stimulation and analysis of a model. Synapse 20:281-98 [Journal] [PubMed] Wilson CJ (1992) Dendritic morphology, inward rectification and the functional properties of neostriatal neurons. Single Neuron Computation., McKenna T:Et Al, ed. pp.141 Wilson CJ, Groves PM (1980) Fine structure and synaptic connections of the common spiny neuron of the rat neostriatum: a study employing intracellular inject of horseradish peroxidase. J Comp Neurol 194:599-615 [Journal] [PubMed] Wilson CJ, Kawaguchi Y (1996) The origins of two-state spontaneous membrane potential fluctuations of neostriatal spiny neurons. J Neurosci 16:2397-410 [PubMed] Yamada H, Fujimoto K, Yoshida M (1995) Neuronal mechanism underlying dystonia induced by bicuculline injection into the putamen of the cat. Brain Res 677:333-6 [PubMed] Yung KK, Smith AD, Levey AI, Bolam JP (1996) Synaptic connections between spiny neurons of the direct and indirect pathways in the neostriatum of the rat: evidence from dopamine receptor and neuropeptide immunostaining. Eur J Neurosci 8:861-9 [PubMed] | Angulo-Garcia D, Berke JD, Torcini A (2016) Cell Assembly Dynamics of Sparsely-Connected Inhibitory Networks: A Simple Model for the Collective Activity of Striatal Projection Neurons. PLoS Comput Biol 12:e1004778 [Journal] [PubMed] Damodaran S, Cressman JR, Jedrzejewski-Szmek Z, Blackwell KT (2015) Desynchronization of fast-spiking interneurons reduces ß-band oscillations and imbalance in firing in the dopamine-depleted striatum. J Neurosci 35:1149-59 [Journal] [PubMed]
Damodaran S, Evans RC, Blackwell KT (2014) Synchronized firing of fast-spiking interneurons is critical to maintain balanced firing between direct and indirect pathway neurons of the striatum. J Neurophysiol 111:836-48 [Journal] [PubMed]
Gruber AJ, Dayan P, Gutkin BS, Solla SA (2006) Dopamine modulation in the basal ganglia locks the gate to working memory. J Comput Neurosci 20:153-66 [Journal] [PubMed] Humphries MD, Wood R, Gurney K (2009) Dopamine-modulated dynamic cell assemblies generated by the GABAergic striatal microcircuit. Neural Netw 22:1174-88 [Journal] [PubMed]
Humphries MD, Wood R, Gurney K (2010) Reconstructing the three-dimensional GABAergic microcircuit of the striatum. PLoS Comput Biol 6:e1001011 [Journal] [PubMed]
Koos T, Tepper JM, Wilson CJ (2004) Comparison of IPSCs evoked by spiny and fast-spiking neurons in the neostriatum. J Neurosci 24:7916-22 [Journal] [PubMed] Kotaleski JH, Plenz D, Blackwell KT (2006) Using potassium currents to solve signal-to-noise problems in inhibitory feedforward networks of the striatum. J Neurophysiol 95:331-41 [Journal] [PubMed]
Wolf JA, Moyer JT, Lazarewicz MT, Contreras D, Benoit-Marand M, O'Donnell P, Finkel LH (2005) NMDA/AMPA ratio impacts state transitions and entrainment to oscillations in a computational model of the nucleus accumbens medium spiny projection neuron. J Neurosci 25:9080-95 [Journal] [PubMed]
Wu Z, Guo A, Fu X (2017) Generation of low-gamma oscillations in a GABAergic network model of the striatum. Neural Netw 95:72-90 [Journal] [PubMed] |