Pages that link to "Item:Q1620798"
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The following pages link to The role of extracellular potassium dynamics in the different stages of ictal bursting and spreading depression: A computational study (Q1620798):
Displaying 10 items.
- Towards a computational method for imaging the extracellular potassium concentration during regional ischemia (Q839154) (← links)
- A computational model integrating brain electrophysiology and metabolism highlights the key role of extracellular potassium and oxygen (Q1642502) (← links)
- Interaction between synaptic inhibition and glial-potassium dynamics leads to diverse seizure transition modes in biophysical models of human focal seizures (Q1705037) (← links)
- Extracellular potassium dynamics in the hyperexcitable state of the neuronal ictal activity (Q1948200) (← links)
- A unified physiological framework of transitions between seizures, sustained ictal activity and depolarization block at the single neuron level (Q2163545) (← links)
- Role of potassium lateral diffusion in non-synaptic epilepsy: a computational study (Q2194967) (← links)
- Metabolism plays a central role in the cortical spreading depression: evidence from a mathematical model (Q2288497) (← links)
- A multidomain model for ionic electrodiffusion and osmosis with an application to cortical spreading depression (Q2396198) (← links)
- Model Based on Extracellular Potassium for Spontaneous Synchronous Activity in Developing Retinas (Q4323335) (← links)
- (Q5134812) (← links)