Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of synaptic inhibition able to exert different transformations of the neuronal input-output function. At the receptor level, synaptic inhibition is primarily mediated by chloride-permeable Type A GABA receptors. Consequently, dynamics in the neuronal chloride concentration can alter the functional properties of inhibitory synapses. How differences in the spatial targeting of inhibitory synapses interact with intracellular chloride dynamics to modulate the input-output function of neurons is not well understood. To address this, we developed computational models of multi-compartment neurons that incorporate experimentally parametrised mechanisms...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Poster presentation at the Twenty Third Annual Computational Neuroscience Meeting: CNS*2014 Québec C...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Synaptic transmission in the nervous system involves the activation of receptor proteins that permit...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
Chloride ions play an important role in controlling excitability of principal neurons in the central...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Poster presentation at the Twenty Third Annual Computational Neuroscience Meeting: CNS*2014 Québec C...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Synaptic transmission in the nervous system involves the activation of receptor proteins that permit...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Fast synaptic inhibition in the nervous system depends on the transmembrane flux of Cl- ions based o...
Chloride ions play an important role in controlling excitability of principal neurons in the central...