Functional connectivity and network analysis during hypoactive delirium and recovery from anesthesia

Publication date

2017-06-01

Authors

Numan, Tianne
Slooter, Arjen J CORCID 0000-0003-0804-8378ISNI 0000000389035877
van der Kooi, Arendina W
Hoekman, Marco F. M.
Suyker, Willem J LISNI 0000000394629063
Stam, Cornelis J
van Dellen, EdwinORCID 0000-0003-1828-5959ISNI 0000000392942531

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Abstract

Objective To gain insight in the underlying mechanism of reduced levels of consciousness due to hypoactive delirium versus recovery from anesthesia, we studied functional connectivity and network topology using electroencephalography (EEG). Methods EEG recordings were performed in age and sex-matched patients with hypoactive delirium (n = 18), patients recovering from anesthesia (n = 20), and non-delirious control patients (n = 20), all after cardiac surgery. Functional and directed connectivity were studied with phase lag index and directed phase transfer entropy. Network topology was characterized using the minimum spanning tree (MST). A random forest classifier was calculated based on all measures to obtain discriminative ability between the three groups. Results Non-delirious control subjects showed a back-to-front information flow, which was lost during hypoactive delirium (p = 0.01) and recovery from anesthesia (p < 0.01). The recovery from anesthesia group had more integrated network in the delta band compared to non-delirious controls. In contrast, hypoactive delirium showed a less integrated network in the alpha band. High accuracy for discrimination between hypoactive delirious patients and controls (86%) and recovery from anesthesia and controls (95%) were found. Accuracy for discrimination between hypoactive delirium and recovery from anesthesia was 73%. Conclusion Loss of functional and directed connectivity were observed in both hypoactive delirium and recovery from anesthesia, which might be related to the reduced level of consciousness in both states. These states could be distinguished in topology, which was a less integrated network during hypoactive delirium. Significance Functional and directed connectivity are similarly disturbed during a reduced level of consciousness due to hypoactive delirium and sedatives, however topology was differently affected.

Keywords

Delirium, Electroencephalography, Encephalopathy, Functional connectivity, Reduced level of consciousness, Sedation, Sensory Systems, Neurology, Clinical Neurology, Physiology (medical)

Citation

Numan, T, Slooter, A J C, van der Kooi, A W, Hoekman, M F M, Suyker, W J L, Stam, C J & van Dellen, E 2017, 'Functional connectivity and network analysis during hypoactive delirium and recovery from anesthesia', Clinical Neurophysiology, vol. 128, no. 6, pp. 914-924. https://doi.org/10.1016/j.clinph.2017.02.022