A spatially extended model for macroscopic spike-wave discharges

被引:0
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作者
Peter Neal Taylor
Gerold Baier
机构
[1] The University of Manchester,Manchester Interdisciplinary Biocentre
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关键词
Epilepsy; EEG; Mathematical modelling; Spike-wave; Bursting;
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摘要
Spike-wave discharges are a distinctive feature of epileptic seizures. So far, they have not been reported in spatially extended neural field models. We study a space-independent version of the Amari neural field model with two competing inhibitory populations. We show that this competition leads to robust spike-wave dynamics if the inhibitory populations operate on different time-scales. The spike-wave oscillations present a fold/homoclinic type bursting. From this result we predict parameters of the extended Amari system where spike-wave oscillations produce a spatially homogeneous pattern. We propose this mechanism as a prototype of macroscopic epileptic spike-wave discharges. To our knowledge this is the first example of robust spike-wave patterns in a spatially extended neural field model.
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页码:679 / 684
页数:5
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