EEG in neonates: forward modeling and sensitivity analysis with respect to variations of the conductivity
DOI10.3934/mbe.2018041zbMath1406.92337OpenAlexW2793646458WikidataQ58130347 ScholiaQ58130347MaRDI QIDQ1714914
Marion Darbas, Hamed Azizollahi, Abdellatif El Badia, Mohamadou Malal Diallo, Stéphanie Lohrengel
Publication date: 1 February 2019
Published in: Mathematical Biosciences and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.3934/mbe.2018041
finite elementssensitivity analysisdipole sourceselectroencephalography in neonatessimulations for realistic head models
Neural biology (92C20) Biomedical imaging and signal processing (92C55) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30)
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- Optimal design for parameter estimation in EEG problems in a 3D multilayered domain
- Functional analysis, Sobolev spaces and partial differential equations
- Linear integral equations.
- Identifiability properties for inverse problems in EEG data processing medical engineering with observability and optimization issues
- An inverse dipole source problem in inhomogeneous media: application to the EEG source localization in neonates
- Source localization using rational approximation on plane sections
- A stable recovering of dipole sources from partial boundary measurements
- Identification of dipole sources in an elliptic equation from boundary measurements: application to the inverse EEG problem
- Numerical Mathematics of the Subtraction Method for the Modeling of a Current Dipole in EEG Source Reconstruction Using Finite Element Head Models
- Elliptic Partial Differential Equations of Second Order
- An inverse source problem in potential analysis
- Finite element approximation of spectral problems with Neumann boundary conditions on curved domains
- Cortical mapping by Laplace–Cauchy transmission using a boundary element method
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