Mathematical analysis of the FitzHugh-Nagumo model shows that TIS amplitudes and beat frequency jointly control whether a neuron remains quiescent, produces transient responses, or exhibits tonic firing.
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EEG source imaging shows strong dependence between forward source model choice and inverse method success, with point-like source models matching best to dipole-scanning inverses.
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A Mathematical Characterization of Neural Activation Induced by Temporal Interference Stimulation
Mathematical analysis of the FitzHugh-Nagumo model shows that TIS amplitudes and beat frequency jointly control whether a neuron remains quiescent, produces transient responses, or exhibits tonic firing.
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Forward--Inverse Interplay in FEM-Based EEG Source Imaging: Distributional Signatures of Advanced Source Models and Inverse Solvers
EEG source imaging shows strong dependence between forward source model choice and inverse method success, with point-like source models matching best to dipole-scanning inverses.