Objective: To investigate the dynamics of communication within the primary somatosensory neuronal network. Methods: Multichannel EEG responses evoked by median nerve stimulation were recorded from six healthy participants. We investigated the directional connectivity of the evoked responses by assessing the Partial Directed Coherence (PDC) among five neuronal nodes (brainstem, thalamus and three in the primary sensorimotor cortex), which had been identified by using the Functional Source Separation (FSS) algorithm. We analyzed directional connectivity separately in the low (1-200. Hz, LF) and high (450-750. Hz, HF) frequency ranges. Results: LF forward connectivity showed peaks at 16, 20, 30 and 50. ms post-stimulus. An estimate of the strength of connectivity was modulated by feedback involving cortical and subcortical nodes. In HF, forward connectivity showed peaks at 20, 30 and 50. ms, with no apparent feedback-related strength changes. Conclusions: In this first non-invasive study in humans, we documented directional connectivity across subcortical and cortical somatosensory pathway, discriminating transmission properties within LF and HF ranges. Significance: The combined use of FSS and PDC in a simple protocol such as median nerve stimulation sheds light on how high and low frequency components of the somatosensory evoked response are functionally interrelated in sustaining somatosensory perception in healthy individuals. Thus, these components may potentially be explored as biomarkers of pathological conditions. © 2012 International Federation of Clinical Neurophysiology.

Multiple frequency functional connectivity in the hand somatosensory network: An EEG study / Camillo, Porcaro; Coppola, Gianluca; Pierelli, Francesco; Stefano, Seri; Giorgio Di, Lorenzo; Leo, Tomasevic; Carlo, Salustri; Franca, Tecchio. - In: CLINICAL NEUROPHYSIOLOGY. - ISSN 1388-2457. - ELETTRONICO. - 124:6(2013), pp. 1216-1224. [10.1016/j.clinph.2012.12.004]

Multiple frequency functional connectivity in the hand somatosensory network: An EEG study

COPPOLA, GIANLUCA;PIERELLI, Francesco;
2013

Abstract

Objective: To investigate the dynamics of communication within the primary somatosensory neuronal network. Methods: Multichannel EEG responses evoked by median nerve stimulation were recorded from six healthy participants. We investigated the directional connectivity of the evoked responses by assessing the Partial Directed Coherence (PDC) among five neuronal nodes (brainstem, thalamus and three in the primary sensorimotor cortex), which had been identified by using the Functional Source Separation (FSS) algorithm. We analyzed directional connectivity separately in the low (1-200. Hz, LF) and high (450-750. Hz, HF) frequency ranges. Results: LF forward connectivity showed peaks at 16, 20, 30 and 50. ms post-stimulus. An estimate of the strength of connectivity was modulated by feedback involving cortical and subcortical nodes. In HF, forward connectivity showed peaks at 20, 30 and 50. ms, with no apparent feedback-related strength changes. Conclusions: In this first non-invasive study in humans, we documented directional connectivity across subcortical and cortical somatosensory pathway, discriminating transmission properties within LF and HF ranges. Significance: The combined use of FSS and PDC in a simple protocol such as median nerve stimulation sheds light on how high and low frequency components of the somatosensory evoked response are functionally interrelated in sustaining somatosensory perception in healthy individuals. Thus, these components may potentially be explored as biomarkers of pathological conditions. © 2012 International Federation of Clinical Neurophysiology.
2013
functional connectivity; partial directed coherence (pdc); somatosensory subcortical and primary cortical network; high frequency oscillations; low frequency oscillations (lfo); granger causality; low frequency oscillations; partial directe; functional source separation; high frequency oscillations (hfo); electroencephalography; functional source separation (fss); 600 hz; 600hz; electroencephalography (eeg)
01 Pubblicazione su rivista::01a Articolo in rivista
Multiple frequency functional connectivity in the hand somatosensory network: An EEG study / Camillo, Porcaro; Coppola, Gianluca; Pierelli, Francesco; Stefano, Seri; Giorgio Di, Lorenzo; Leo, Tomasevic; Carlo, Salustri; Franca, Tecchio. - In: CLINICAL NEUROPHYSIOLOGY. - ISSN 1388-2457. - ELETTRONICO. - 124:6(2013), pp. 1216-1224. [10.1016/j.clinph.2012.12.004]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/515530
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