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Admittance Method for Estimating Local Field Potentials Generated in a Multi-Scale Neuron Model of the Hippocampus
2020
Frontiers in Computational Neuroscience
Significant progress has been made toward model-based prediction of neral tissue activation in response to extracellular electrical stimulation, but challenges remain in the accurate and efficient estimation of distributed local field potentials (LFP). Analytical methods of estimating electric fields are a first-order approximation that may be suitable for model validation, but they are computationally expensive and cannot accurately capture boundary conditions in heterogeneous tissue. While
doi:10.3389/fncom.2020.00072
pmid:32848687
pmcid:PMC7417331
fatcat:cnb72635wncezfkdzgo5cylr7i