Publication | Open Access
The Refractory Period Matters: Unifying Mechanisms of Macroscopic Brain Waves
11
Citations
31
References
2021
Year
Coherence ResonanceNeural SystemsBrain OrganizationComplex Oscillatory PatternsSensory SystemsSocial SciencesNeurodynamicsCognitive ElectrophysiologyNeurologyCognitive ScienceNervous SystemBrain CircuitryRefractory Period MattersComplex Brain OscillationsNeurophysiologyNeuroanatomyComputational NeuroscienceNeural CircuitsMaximum CaliberNeuronal NetworkBrain ElectrophysiologyNeuroscienceCentral Nervous SystemMedicineBrain Modeling
The relationship between complex brain oscillations and the dynamics of individual neurons is poorly understood. Here we utilize maximum caliber, a dynamical inference principle, to build a minimal yet general model of the collective (mean field) dynamics of large populations of neurons. In agreement with previous experimental observations, we describe a simple, testable mechanism, involving only a single type of neuron, by which many of these complex oscillatory patterns may emerge. Our model predicts that the refractory period of neurons, which has often been neglected, is essential for these behaviors.
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