Neuronal excitability relies on inward sodium and outward potassium fluxes during action potentials. To prevent neuronal hyperexcitability, potassium ions have to be taken up quick-ly. However, the dynamics of the activity-dependent potassium fluxes and the molecular pathways underlying extracellular potassium homeostasis remain elusive. To decipher the specific and acute contribution of astroglial Kir4.1 channels in controlling potassium homeo-stasis and the moment to moment neurotransmission, we built a tri-compartment model ac-counting for potassium dynamics between neurons, astrocytes and the extracellular space. We here demonstrate that astroglial Kir4.1 channels are sufficient to account for the slow membrane depolarization of hippoca...
<p><b><i>A-I</i></b>, K<sup>+</sup> redistribution between neurons, extracellular space and astrocyt...
Summary Neuronal rhythmogenesis in the spinal cord is correlated with variations in extracellular K ...
© 2020 The Authors. The Journal of Physiology © 2020 The Physiological Society. Key points Neuronal ...
Neuronal excitability relies on inward sodium and outward potassium fluxes during action potentials....
International audienceNeuronal excitability relies on inward sodium and outward potassium fluxes dur...
International audienceNeuronal excitability relies on inward sodium and outward potassium fluxes dur...
<div><p>Neuronal excitability relies on inward sodium and outward potassium fluxes during action pot...
International audienceNeuronal excitability relies on inward sodium and outward potassium fluxes dur...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
Inwardly rectifying Kir4.1 channels in astrocytes mediate spatial potassium (K+) buffering, a cleara...
Summary: Channelrhodopsin2 (ChR2) optogenetic excitation is widely used to study neurons, astrocytes...
The human brain contains two major cell populations, neurons and glia. While neurons are electricall...
Neuronal excitability is tightly coupled to the complex ionic dynamics in the nervous system. In par...
Epileptic seizures affect one in hundred people and about 30 % of all patients don’t benefit from me...
Neuronal excitability is tightly coupled to the complex ionic dynamics in the nervous system. In par...
<p><b><i>A-I</i></b>, K<sup>+</sup> redistribution between neurons, extracellular space and astrocyt...
Summary Neuronal rhythmogenesis in the spinal cord is correlated with variations in extracellular K ...
© 2020 The Authors. The Journal of Physiology © 2020 The Physiological Society. Key points Neuronal ...
Neuronal excitability relies on inward sodium and outward potassium fluxes during action potentials....
International audienceNeuronal excitability relies on inward sodium and outward potassium fluxes dur...
International audienceNeuronal excitability relies on inward sodium and outward potassium fluxes dur...
<div><p>Neuronal excitability relies on inward sodium and outward potassium fluxes during action pot...
International audienceNeuronal excitability relies on inward sodium and outward potassium fluxes dur...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
Inwardly rectifying Kir4.1 channels in astrocytes mediate spatial potassium (K+) buffering, a cleara...
Summary: Channelrhodopsin2 (ChR2) optogenetic excitation is widely used to study neurons, astrocytes...
The human brain contains two major cell populations, neurons and glia. While neurons are electricall...
Neuronal excitability is tightly coupled to the complex ionic dynamics in the nervous system. In par...
Epileptic seizures affect one in hundred people and about 30 % of all patients don’t benefit from me...
Neuronal excitability is tightly coupled to the complex ionic dynamics in the nervous system. In par...
<p><b><i>A-I</i></b>, K<sup>+</sup> redistribution between neurons, extracellular space and astrocyt...
Summary Neuronal rhythmogenesis in the spinal cord is correlated with variations in extracellular K ...
© 2020 The Authors. The Journal of Physiology © 2020 The Physiological Society. Key points Neuronal ...