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Skinner FK, Zhang L, Velazquez JL, Carlen PL. (1999). Bursting in inhibitory interneuronal networks: A role for gap-junctional coupling. Journal of neurophysiology. 81 [PubMed]

See more from authors: Skinner FK · Zhang L · Velazquez JL · Carlen PL

References and models cited by this paper
References and models that cite this paper

Chartove JA, McCarthy MM, Pittman-Polletta BR, Kopell NJ. (2020). A biophysical model of striatal microcircuits suggests gamma and beta oscillations interleaved at delta/theta frequencies mediate periodicity in motor control PLOS Computational Biology. 16

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Jalil S, Grigull J, Skinner FK. (2004). Novel bursting patterns emerging from model inhibitory networks with synaptic depression. Journal of computational neuroscience. 17 [PubMed]

Pfeuty B, Mato G, Golomb D, Hansel D. (2005). The combined effects of inhibitory and electrical synapses in synchrony. Neural computation. 17 [PubMed]

Saraga F, Ng L, Skinner FK. (2006). Distal gap junctions and active dendrites can tune network dynamics. Journal of neurophysiology. 95 [PubMed]

Saraga F, Skinner FK. (2002). Dynamics and diversity in interneurons: a model exploration with slowly inactivating potassium currents. Neuroscience. 113 [PubMed]

Saraga F, Skinner FK. (2004). Location, location, location (and density) of gap junctions in multi-compartment models. Neurocomputing. 58-60

Saraga F, Wu CP, Zhang L, Skinner FK. (2003). Active dendrites and spike propagation in multi-compartment models of oriens-lacunosum/moleculare hippocampal interneurons. The Journal of physiology. 552 [PubMed]

Skinner FK, Saraga F. (2002). Slowly-inactivating potassium conductances in compartmental interneuron models Neurocomputing. 44

Talathi SS, Hwang DU, Ditto WL. (2008). Spike timing dependent plasticity promotes synchrony of inhibitory networks in the presence of heterogeneity. Journal of computational neuroscience. 25 [PubMed]

Truccolo W, Ho EC. (2016). Interaction between Synaptic Inhibition and Glial-Potassium Dynamics leads to Diverse Seizure Transition Modes in Biophysical Models of Human Focal Seizures J Comput Neurosci.

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