Optimal (‘Wiener’) digital filtering of auditory evoked potentials: use of coherence estimates
Author:
Publisher
Elsevier BV
Subject
Clinical Neurology,General Neuroscience
Reference19 articles.
1. Is Wiener filtering an effective method of improving evoked potential estimation?;Carlton;IEEE Trans. Biomed. Eng.,1980
2. Estimation of the magnitude-squared coherence function via overlapped fast Fourier transform processing;Carter;IEEE Trans. Audio-Electroacoust.,1973
3. Facts and fancies about a posteriori ‘Wiener’ filtering;De Weerd;IEEE Trans. Biomed. Eng.,1981
4. Theory and practice of a posteriori ‘Wiener’ filtering of average evoked potentials;De Weerd;Biol. Cybern.,1978
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1. Multi-harmonic Analysis Using Magnitude-Squared Coherence and Its Application to Detection of Auditory Steady-State Responses;Communications in Computer and Information Science;2019
2. Low-level steady-state auditory evoked potentials: Effects of rate and sedation on detectability;The Journal of the Acoustical Society of America;1998-12
3. Comparison of Objective Threshold Estimation Procedures for 40-Hz Auditory Evoked Potentials;Ear and Hearing;1995-06
4. Objective detection of 40 Hz auditory evoked potentials: phase coherence vs. magnitude-squared coherence;Electroencephalography and Clinical Neurophysiology/Evoked Potentials Section;1994-09
5. Phase weighting: A method to improve objective detection of steady-state evoked potentials;Hearing Research;1994-09
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