The ictal wavefront is the spatiotemporal source of discharges during spontaneous human seizures.
The ictal wavefront is the spatiotemporal source of discharges during spontaneous human seizures.
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DOI:
10.1038/ncomms11098
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发表时间:
2016-03-29
影响因子:
16.6
通讯作者:
Schevon CA
中科院分区:
文献类型:
--
作者:
Smith EH;Liou JY;Davis TS;Merricks EM;Kellis SS;Weiss SA;Greger B;House PA;McKhann GM 2nd;Goodman RR;Emerson RG;Bateman LM;Trevelyan AJ;Schevon CA
The extensive distribution and simultaneous termination of seizures across cortical areas has led to the hypothesis that seizures are caused by large-scale coordinated networks spanning these areas. This view, however, is difficult to reconcile with most proposed mechanisms of seizure spread and termination, which operate on a cellular scale. We hypothesize that seizures evolve into self-organized structures wherein a small seizing territory projects high-intensity electrical signals over a broad cortical area. Here we investigate human seizures on both small and large electrophysiological scales. We show that the migrating edge of the seizing territory is the source of travelling waves of synaptic activity into adjacent cortical areas. As the seizure progresses, slow dynamics in induced activity from these waves indicate a weakening and eventual failure of their source. These observations support a parsimonious theory for how large-scale evolution and termination of seizures are driven from a small, migrating cortical area. Epileptic brains display inhibitory restraint as manifested by the spread of synchronized activities being delayed in timing. Here, Elliot Smith and colleagues show fast-moving traveling wave that originates from the edge of ictal wavefront with subsequent depolarization and multiunit firing in the seizing brain regions in epileptic patients.