Medical Engineering & Physics
Volume 29, Issue 8 , Pages 910-917, October 2007

Objective response detection technique in frequency-domain for reflecting changes in MLAEP

Biomedical Engineering Program, Federal University of Rio de Janeiro, P.O. Box 68510, 21941-972 Rio de Janeiro, RJ, Brazil

Received 6 January 2006; received in revised form 6 October 2006; accepted 10 October 2006. published online 19 December 2006.

Abstract 

The mid-latency auditory evoked potential (MLAEP) occurs within the interval 10–100ms post-stimulus and exhibits morphological changes due to coma, general anaesthesia and neurological and psychiatric diseases. This work evaluates an objective response detection technique in the frequency domain, the magnitude squared coherence , in reflecting MLAEPs changes in amplitude and latencies. Both simulation and EEG data were used in this investigation. The EEG during auditory stimulation in 10 volunteers under propofol-induced anaesthesia was acquired. Based on the null hypothesis of non-existing response, critical values have been derived in order to detect the auditory response. The alternative hypothesis was used to infer about maximal-response frequencies as well as to derive confidence intervals for the estimated values of during anaesthesia. Changes in both simulated and real MLAEPs could be tracked by , even for low SNR. High degree of cortical activation occurred predominantly between 30 and 90Hz. This finding could be related to the sensory-originated phase-locked oscillation in the gamma band (30–70Hz). Hence, for applications where changes on MLAEPs should be assessed, the use of as an objective statistical response detection technique is worth to be applied.

Keywords: Auditory evoked potential, Objective response detection, Anaesthesia

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PII: S1350-4533(06)00208-6

doi:10.1016/j.medengphy.2006.10.004

Medical Engineering & Physics
Volume 29, Issue 8 , Pages 910-917, October 2007