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Payne JA, Rivera C, Voipio J, Kaila K (2003) Cation-chloride co-transporters in neuronal communication, development and trauma. Trends Neurosci 26:199-206 [PubMed]

References and models cited by this paper

References and models that cite this paper

Buchin A, Chizhov A, Huberfeld G, Miles R, Gutkin BS (2016) Reduced Efficacy of the KCC2 Cotransporter Promotes Epileptic Oscillations in a Subiculum Network Model. J Neurosci 36:11619-11633 [Journal] [PubMed]
   Subiculum network model with dynamic chloride/potassium homeostasis (Buchin et al 2016) [Model]
Doyon N, Prescott SA, Castonguay A, Godin AG, Kröger H, De Koninck Y (2011) Efficacy of synaptic inhibition depends on multiple, dynamically interacting mechanisms implicated in chloride homeostasis. PLoS Comput Biol 7:e1002149 [Journal] [PubMed]
Gentiletti D, Suffczynski P, Gnatkovsky V, de Curtis M (2017) Changes of Ionic Concentrations During Seizure Transitions - A Modeling Study. Int J Neural Syst 27:1750004 [Journal] [PubMed]
   Changes of ionic concentrations during seizure transitions (Gentiletti et al. 2016) [Model]
Krishnan GP, Filatov G, Shilnikov A, Bazhenov M (2015) Electrogenic properties of the Na?/K? ATPase control transitions between normal and pathological brain states. J Neurophysiol 113:3356-74 [Journal] [PubMed]
   Single cell model with variable ion concentrations and Na+/K+ ATPase (Krishnan et al. 2015) [Model]
Ratté S, Prescott SA (2011) ClC-2 channels regulate neuronal excitability, not intracellular chloride levels. J Neurosci 31:15838-43 [Journal] [PubMed]
   ClC-2 channels regulate neuronal excitability, not intracellular Cl- levels (Ratte & Prescott 2011) [Model]
Vida I, Bartos M, Jonas P (2006) Shunting inhibition improves robustness of gamma oscillations in hippocampal interneuron networks by homogenizing firing rates. Neuron 49:107-17 [Journal] [PubMed]
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