Published March 11, 2022 | Version 1

Methods for inferring neural circuit interactions and neuromodulation from local feld potential and electroencephalogram measures

  • 1. University of Granada, Granada, Spain
  • 2. Istituto Italiano di Tecnologia (IIT)
  • 3. Department of Excellence for Neural Information Processing, Center for Molecular Neurobiology (ZMNH), University Medical Center HamburgEppendorf (UKE), Hamburg, Germany

Description

Electrical recordings of neural mass activity, such as local feld potentials (LFPs) and electroencephalograms (EEGs), have been instrumental in studying brain function. However, these aggregate signals lack cellular resolution and thus are not easy to be interpreted directly in terms of parameters of neural microcircuits. Developing tools for a reliable estimation of key neural parameters from these signals, such as the interaction between excitation and inhibition or the level of neuromodulation, is important for both neuroscientifc and clinical applications. Over the years, we have developed tools based on neural network modeling and computational analysis of empirical data to estimate neural parameters from aggregate neural signals. This review article gives an overview of the main computational tools that we have developed and employed to invert LFPs and EEGs in terms of circuit-level neural phenomena, and outlines future challenges and directions for future research.

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