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Localization of brain electrical activity via linearly constrained minimum variance spatial filtering

IEEE Transactions on Biomedical Engineering · 1997 · Vol. 44(9) · pp. 867–880
B.D. Van VeenWim van DrongelenMoshe YuchtmanAiga Suzuki

Abstract

A spatial filtering method for localizing sources of brain electrical activity from surface recordings is described and analyzed. The spatial filters are implemented as a weighted sum of the data recorded at different sites. The weights are chosen to minimize the filter output power subject to a linear constraint. The linear constraint forces the filter to pass brain electrical activity from a specified location, while the power minimization attenuates activity originating at other locations. The estimated output power as a function of location is normalized by the estimated noise power as a function of location to obtain a neural activity index map. Locations of source activity correspond to maxima in the neural activity index map. The method does not require any prior assumptions about the number of active sources of their geometry because it exploits the spatial covariance of the source electrical activity. This paper presents a development and analysis of the method and explores its sensitivity to deviations between actual and assumed data models. The effect on the algorithm of covariance matrix estimation, correlation between sources, and choice of reference is discussed. Simulated and measured data is used to illustrate the efficacy of the approach.

Direction-of-Arrival Estimation TechniquesSpeech and Audio ProcessingStructural Health Monitoring TechniquesCovariance matrixComputer scienceNoise (video)Filter (signal processing)CovarianceConstraint (computer-aided design)Spatial filterAlgorithmSensitivity (control systems)Linear filter

MeSH terms

AlgorithmsCraniotomyElectrodes, ImplantedElectroencephalographyHumansIntraoperative PeriodModels, NeurologicalSensitivity and SpecificitySignal Processing, Computer-AssistedLinear Models
Citations
2,709
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References
Multiple dipole modeling and localization from spatio-temporal MEG data
IEEE Transactions on Biomedical Engineering · 1992 · 1,044 citations
An algorithm for linearly constrained adaptive array processing
Proceedings of the IEEE · 1972 · 2,498 citations
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