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Role of potassium lateral diffusion in non-synaptic epilepsy: a computational study

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Publication:2194967
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DOI10.1016/j.jtbi.2005.06.015zbMath1445.92081OpenAlexW2049268334WikidataQ46638692 ScholiaQ46638692MaRDI QIDQ2194967

Dominique M. Durand, Eun-Hyoung Park

Publication date: 7 September 2020

Published in: Journal of Theoretical Biology (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/j.jtbi.2005.06.015


zbMATH Keywords

diffusionpotassiumsustained activitynon-synaptic epilepsy


Mathematics Subject Classification ID

Neural biology (92C20) Computational methods for problems pertaining to biology (92-08) Pathology, pathophysiology (92C32)


Related Items (5)

The role of extracellular potassium dynamics in the different stages of ictal bursting and spreading depression: A computational study ⋮ Extracellular potassium dynamics in the hyperexcitable state of the neuronal ictal activity ⋮ Interaction between synaptic inhibition and glial-potassium dynamics leads to diverse seizure transition modes in biophysical models of human focal seizures ⋮ A Hamilton-Jacobi-Bellman approach for termination of seizure-like bursting ⋮ Unnamed Item



Cites Work

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