Phase lag index: Assessment of functional connectivity from multi channel EEG and MEG with diminished bias from common sources
Индекс фазового лага: оценка функциональной связанности по многоканальным данным ЭЭГ и МЭГ с уменьшенным смещением, обусловленным общими источниками
2007-01-31
SCID: 54.1/e5hwbx6q
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MEGfunctional connectivitymulti-channel EEGphase lag indexvolume conduction
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Abstract (AI)
OBJECTIVE: To address the problem of volume conduction and active reference electrodes in the assessment of functional connectivity, we propose a novel measure to quantify phase synchronization, the phase lag index (PLI), and compare its performance to the well-known phase coherence (PC), and to the imaginary component of coherency (IC). METHODS: The PLI is a measure of the asymmetry of the distribution of phase differences between two signals. The performance of PLI, PC, and IC was examined in (i) a model of 64 globally coupled oscillators, (ii) an EEG with an absence seizure, (iii) an EEG data set of 15 Alzheimer patients and 13 control subjects, and (iv) two MEG data sets. RESULTS: PLI and PC were more sensitive than IC to increasing levels of true synchronization in the model. PC and IC were influenced stronger than PLI by spurious correlations because of common sources. All measures detected changes in synchronization during the absence seizure. In contrast to PC, PLI and IC were barely changed by the choice of different montages. PLI and IC were superior to PC in detecting changes in beta band connectivity in AD patients. Finally, PLI and IC revealed a different spatial pattern of functional connectivity in MEG data than PC. CONCLUSION: The PLI performed at least as well as the PC in detecting true changes in synchronization in model and real data but, at the same token and like-wise the IC, it was much less affected by the influence of common sources and active reference electrodes.
Key Findings
1
During absence seizures, all three measures detected synchronization changes, while PLI and imaginary coherency were substantially less affected than phase coherence by montage selection.
2
In globally coupled oscillator models, PLI and phase coherence were more sensitive than imaginary coherency to increasing true synchronization.
3
PLI and imaginary coherency outperformed phase coherence in detecting beta-band connectivity changes in Alzheimer’s disease and produced different MEG connectivity patterns.
4
Phase coherence and imaginary coherency were more strongly affected than PLI by spurious correlations generated by common sources.
5
The phase lag index (PLI) quantifies phase synchronization through asymmetry in phase-difference distributions, reducing bias from common sources and active reference electrodes.
Research Object
Functional connectivity assessment using multi-channel EEG and MEG recordings
Research Subject
Phase synchronization assessment and connectivity changes with reduced bias from volume conduction, common sources, and active reference electrodes
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2007-01-31
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