It has recently been proposed using a multi-compartmental mathematical model that negatively fixed charged membrane-associated sites constrain the flow of cations in perisynaptic astroglial processes. This restricted movement of ions between the perisynaptic cradle (PsC), principal astroglial processes and the astrocyte soma gives rise to potassium (K+) and sodium (Na+) microdomains at the PsC. The present paper extends the above model to demonstrate that the formation of an Na+ microdomain can reverse the Na+/Ca2+ exchanger (NCX) thus providing an additional source of calcium (Ca2+) at the PsC. Results presented clearly show that reversal of the Na+/Ca2+ exchanger is instigated by a glutamate transporter coupled increase in concentration o...
Astrocytes display a highly complex, spongiform morphology, with their fine terminal processes (leaf...
Glial cells display propagated waves of cytoplasmic calcium (Ca2+) mobilization that spread outward ...
Astrocytic Ca2+ signals regulate synaptic activity. Most of those signals are spatially restricted t...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
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 (...
<div><p>A biophysical model that captures molecular homeostatic control of ions at the perisynaptic ...
Calcium transients in thin astrocytic processes can be important in synaptic plasticity, but their m...
Calcium transients in thin astrocytic processes can be important in synaptic plasticity, but their m...
Astroglial excitability operates through increases in Ca 2+ cyt (cytosolic Ca 2+ ), which can lead t...
Astrocytes are complex glial cells that play many essential roles in the brain, including the fine-t...
Recently accumulated evidence suggest that astrocyte signaling is linked to extracellular volume reg...
<div><p>Astrocytes integrate and process synaptic information and exhibit calcium (Ca<sup>2+</sup>) ...
Astrocytes participate in brain functions through Ca2+ signals, including Ca2+ waves and Ca2+ oscill...
Astrocytes display a highly complex, spongiform morphology, with their fine terminal processes (leaf...
Glial cells display propagated waves of cytoplasmic calcium (Ca2+) mobilization that spread outward ...
Astrocytic Ca2+ signals regulate synaptic activity. Most of those signals are spatially restricted t...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
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 (...
<div><p>A biophysical model that captures molecular homeostatic control of ions at the perisynaptic ...
Calcium transients in thin astrocytic processes can be important in synaptic plasticity, but their m...
Calcium transients in thin astrocytic processes can be important in synaptic plasticity, but their m...
Astroglial excitability operates through increases in Ca 2+ cyt (cytosolic Ca 2+ ), which can lead t...
Astrocytes are complex glial cells that play many essential roles in the brain, including the fine-t...
Recently accumulated evidence suggest that astrocyte signaling is linked to extracellular volume reg...
<div><p>Astrocytes integrate and process synaptic information and exhibit calcium (Ca<sup>2+</sup>) ...
Astrocytes participate in brain functions through Ca2+ signals, including Ca2+ waves and Ca2+ oscill...
Astrocytes display a highly complex, spongiform morphology, with their fine terminal processes (leaf...
Glial cells display propagated waves of cytoplasmic calcium (Ca2+) mobilization that spread outward ...
Astrocytic Ca2+ signals regulate synaptic activity. Most of those signals are spatially restricted t...