Neuronal Electrical Ongoing Activity as Cortical Areas Signature: An Insight from MNI Intracerebral Recording Atlas

Author:

Armonaite Karolina1ORCID,Bertoli Massimo23ORCID,Paulon Luca2,Gianni Eugenia24,Balsi Marco5,Conti Livio67ORCID,Tecchio Franca2ORCID

Affiliation:

1. Faculty of Psychology, Uninettuno University, Rome 00186, Italy

2. Laboratory of Electrophysiology for Translational NeuroScience (LET’S), Institute of Cognitive Sciences and Technologies - Consiglio Nazionale delle Ricerche, Rome 00185, Italy

3. Department of Neuroscience, Imaging and Clinical Sciences, University ‘Gabriele D’Annunzio’ of Chieti-Pescara, Chieti 66100, Italy

4. Unit of Neurology, Neurophysiology, Neurobiology, Department of Medicine, Università Campus Bio-Medico di Roma, Rome 00128, Italy

5. Department of Information Engineering, Electronics and Telecommunications, Sapienza University, Rome 00185, Italy

6. Faculty of Engineering, Uninettuno University, Rome 00186, Italy

7. INFN - Istituto Nazionale di Fisica Nucleare, Sezione Roma Tor Vergata, Rome 00133, Italy

Abstract

Abstract The time course of the neuronal activity in the brain network, the neurodynamics, reflects the structure and functionality of the generating neuronal pools. Here, using the intracranial stereo-electroencephalographic (sEEG) recordings of the public Montreal Neurological Institute (MNI) atlas, we investigated the neurodynamics of primary motor (M1), somatosensory (S1) and auditory (A1) cortices measuring power spectral densities (PSD) and Higuchi fractal dimension (HFD) in the same subject (M1 vs. S1 in 16 subjects, M1 vs. A1 in 9, S1 vs. A1 in 6). We observed specific spectral features in M1, which prevailed above beta band, S1 in the alpha band, and A1 in the delta band. M1 HFD was higher than S1, both higher than A1. A clear distinction of neurodynamics properties of specific primary cortices supports the efforts in cortical parceling based on this expression of the local cytoarchitecture and connectivity. In this perspective, we selected within the MNI intracortical database a first set of primary motor, somatosensory and auditory cortices’ representatives to query in recognizing ongoing patterns of neuronal communication. Potential clinical impact stands primarily in exploiting such exchange patterns to enhance the efficacy of neuromodulation intervention to cure symptoms secondary to neuronal activity unbalances.

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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