Neuronal stimulation causes,30 % shrinkage of the extracellular space (ECS) between neurons and surrounding astrocytes in grey and white matter under experimental conditions. Despite its possible implications for a proper understanding of basic aspects of potassium clearance and astrocyte function, the phenomenon remains unexplained. Here we present a dynamic model that accounts for current experimental data related to the shrinkage phenomenon in wild-type as well as in gene knockout individuals. We find that neuronal release of potassium and uptake of sodium during stimulation, astrocyte uptake of potassium, sodium, and chloride in passive channels, action of the Na/K/ATPase pump, and osmotically driven transport of water through the astro...
<div><p>Recently, we have identified two astrocytic subpopulations in the cortex of GFAP-EGFP mice, ...
Astrocytes, the major type of non-neuronal cells in the brain, play an important functional role in ...
Extracellular potassium concentration, [K(+)](o), and intracellular calcium, [Ca(2+)](i), rise durin...
Abstract:Neurotransmitter and ion influx into astrocytes generates osmotic gradients coupled to wate...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
© 2020 The Authors. The Journal of Physiology © 2020 The Physiological Society. Key points Neuronal ...
Astrocytes are a type of glial cell found in the CNS and play important physiological roles in maint...
Astrocytes, the major type of non-neuronal cells in the brain, play an important functional role in ...
The human brain contains two major cell populations, neurons and glia. While neurons are electricall...
A biophysical model that captures molecular homeostatic control of ions at the perisynaptic cradle (...
A biophysical model that captures molecular homeostatic control of ions at the perisynaptic cradle (...
Potassium (K(+)) ions released into brain extracellular space (ECS) during neuroexcitation are effic...
<div><p>A biophysical model that captures molecular homeostatic control of ions at the perisynaptic ...
Malfunction of astrocytic K+ regulation contributes to the breakdown of extracellular K+ homeostasis...
<div><p>Recently, we have identified two astrocytic subpopulations in the cortex of GFAP-EGFP mice, ...
Astrocytes, the major type of non-neuronal cells in the brain, play an important functional role in ...
Extracellular potassium concentration, [K(+)](o), and intracellular calcium, [Ca(2+)](i), rise durin...
Abstract:Neurotransmitter and ion influx into astrocytes generates osmotic gradients coupled to wate...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
© 2020 The Authors. The Journal of Physiology © 2020 The Physiological Society. Key points Neuronal ...
Astrocytes are a type of glial cell found in the CNS and play important physiological roles in maint...
Astrocytes, the major type of non-neuronal cells in the brain, play an important functional role in ...
The human brain contains two major cell populations, neurons and glia. While neurons are electricall...
A biophysical model that captures molecular homeostatic control of ions at the perisynaptic cradle (...
A biophysical model that captures molecular homeostatic control of ions at the perisynaptic cradle (...
Potassium (K(+)) ions released into brain extracellular space (ECS) during neuroexcitation are effic...
<div><p>A biophysical model that captures molecular homeostatic control of ions at the perisynaptic ...
Malfunction of astrocytic K+ regulation contributes to the breakdown of extracellular K+ homeostasis...
<div><p>Recently, we have identified two astrocytic subpopulations in the cortex of GFAP-EGFP mice, ...
Astrocytes, the major type of non-neuronal cells in the brain, play an important functional role in ...
Extracellular potassium concentration, [K(+)](o), and intracellular calcium, [Ca(2+)](i), rise durin...