Low-to-High Cross-Frequency Coupling in the Electrical Rhythms as Biomarker for Hyperexcitable Neuroglial Networks of the Brain

Conclusion: Longer duration SEDs exhibit CFC features similar to those reported by our team. Significance: First, Identifying the exponential relationship between network excitability and SED durations; second, highlighting the importance of glia in hyperexcitability (- s they relate to extracellular potassium); and third, elucidation of the biophysical basis for CFC coupling features.
Source: IEEE Transactions on Biomedical Engineering - Category: Biomedical Engineering Source Type: research