VLSI multivariate phase synchronization epileptic seizure detector

Neural Engineering(2011)

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摘要
A low-power VLSI seizure detector is presented. It combines a 256-channel analog neural recording chip and a low-power synthesized digital VLSI processor. The processor computes the bivariate phase synchronization on any two neural inputs from a set of 256 and their instantaneous magnitude. For experimentation with in vitro epilepsy models, a low-cost technique to implement on-chip gold microelectrodes was utilized. Results are shown using an in vitro low Mg2+ mouse epilepsy model and human EEG data.
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关键词
vlsi,electroencephalography,gold,medical disorders,medical signal detection,medical signal processing,microelectrodes,neurophysiology,synchronisation,au,eeg,analog neural recording chip,bivariate phase synchronization,low-power vlsi epileptic seizure detector,low-power synthesized digital vlsi processor,on-chip gold microelectrodes,in vitro,hippocampus,synchronization,computer architecture,very large scale integration,chip,phase synchronization
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