Journal article
Dissociating the effects of nitrous oxide on brain electrical activity using fixed order time series modeling
DTJ Liley, K Leslie, NC Sinclair, M Feckie
Computers in Biology and Medicine | PERGAMON-ELSEVIER SCIENCE LTD | Published : 2008
Abstract
A number of commonly used anesthetics, including nitrous oxide (N2O), are poorly detected by current electroencephalography (EEG)-based measures of anesthetic depth such as the bispectral index. Based on a previously elaborated theory of electrocortical rhythmogenesis we developed a physiologically inspired method of EEG analysis that was hypothesized to be more sensitive in detecting and characterizing N2O effect than the bispectral index, through its combined EEG estimates of cortical input and cortical state. By evaluating sevoflurane-induced loss of consciousness in the presence of low brain concentrations of N2O in 38 elective surgical patients, N2O was associated with a statistically s..
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Funding Acknowledgements
This research was supported by a Project Grant from the Australian and New Zealand College of Anaesthetists awarded to K.L. and D.L. Mr. Louis Delacretaz (Cortical Dynamics Pty. Ltd.) kindly provided software and software support for the transfer of all raw EEG and BIS related data from the A2000 monitor.