Publication | Open Access
Neurophysiological Investigation of Spontaneous Correlated and Anticorrelated Fluctuations of the BOLD Signal
251
Citations
60
References
2013
Year
Bold CorrelationsBold AnticorrelationsBrain OrganizationSensory SystemsSocial SciencesNeurodynamicsSensory NeuroscienceCognitive ElectrophysiologyNeurologyMotor NeurophysiologyNegative Bold CorrelationsNetwork NeuroscienceSpontaneous CorrelatedNeuroimagingBold SignalStochastic ResonanceBrain NetworksNervous SystemBrain ImagingBrain CircuitrySystems NeuroscienceIntegrative NeuroscienceNeurophysiologyComputational NeuroscienceCellular NeuroscienceHuman NeuroscienceNeuroscienceBrain ElectrophysiologyCentral Nervous SystemMedicineAnticorrelated Fluctuations
Analyses of intrinsic fMRI BOLD signal fluctuations reliably reveal correlated and anticorrelated functional networks in the brain. Because the BOLD signal is an indirect measure of neuronal activity and anticorrelations can be introduced by preprocessing steps, such as global signal regression, the neurophysiological significance of correlated and anticorrelated BOLD fluctuations is a source of debate. Here, we address this question by examining the correspondence between the spatial organization of correlated BOLD fluctuations and correlated fluctuations in electrophysiological high γ power signals recorded directly from the cortical surface of 5 patients. We demonstrate that both positive and negative BOLD correlations have neurophysiological correlates reflected in fluctuations of spontaneous neuronal activity. Although applying global signal regression to BOLD signals results in some BOLD anticorrelations that are not apparent in the ECoG data, it enhances the neuronal-hemodynamic correspondence overall. Together, these findings provide support for the neurophysiological fidelity of BOLD correlations and anticorrelations.
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