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Updated: Sep 11, 2025

Generation of Local CA1 γ Oscillations by Tetanic Stimulation
Published on: August 14, 2015
Functional excitation-inhibition ratio indicates near-critical oscillations across frequencies
Marina Diachenko1, Additya Sharma1, Dirk J A Smit2,3,4
1Department of Integrative Neurophysiology, Center for Neurogenomics and Cognitive Research (CNCR), Amsterdam Neuroscience, VU Amsterdam, Amsterdam, The Netherlands.
Abstract:
The concept of excitation/inhibition (E/I) balance plays an important role in understanding brain function in health and disease. We recently introduced an algorithm to determine a functional E/I ratio based on the critical brain dynamics that emerge in neuronal networks balancing between order and disorder. Little, however, is known about the frequency specificity of E/I regulation and how to measure it. Here, we optimized the algorithm for measuring functional excitation-inhibition ratio (fE/I) in narrow frequency ranges and validated it on a computational model of critical oscillations and EEG data. In the computational model, we confirmed thatfE/Idiscriminated E/I connectivity differences across a wide range of frequencies (1-150 Hz). Twin EEG data revealed significant genetic influences onfE/Iacross frequencies, whereas contrasting eyes-open and -closed EEG indicated functional changes offE/Irestricted to a subset of alpha and beta oscillations and brain regions. We propose that assessingfE/Iwith finer frequency resolution will prove useful for understanding the functional role of E/I regulation in a spectrally refined fashion in health and disease.
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