Electroencephalogram-Based Complexity Measures as Predictors of Post-operative Neurocognitive Dysfunction.

dc.contributor.author

Acker, Leah

dc.contributor.author

Ha, Christine

dc.contributor.author

Zhou, Junhong

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Manor, Brad

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Giattino, Charles M

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Roberts, Ken

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Berger, Miles

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Wright, Mary Cooter

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Colon-Emeric, Cathleen

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Devinney, Michael

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Au, Sandra

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Woldorff, Marty G

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Lipsitz, Lewis A

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Whitson, Heather E

dc.date.accessioned

2025-08-30T22:39:05Z

dc.date.available

2025-08-30T22:39:05Z

dc.date.issued

2021-01

dc.description.abstract

Physiologic signals such as the electroencephalogram (EEG) demonstrate irregular behaviors due to the interaction of multiple control processes operating over different time scales. The complexity of this behavior can be quantified using multi-scale entropy (MSE). High physiologic complexity denotes health, and a loss of complexity can predict adverse outcomes. Since postoperative delirium is particularly hard to predict, we investigated whether the complexity of preoperative and intraoperative frontal EEG signals could predict postoperative delirium and its endophenotype, inattention. To calculate MSE, the sample entropy of EEG recordings was computed at different time scales, then plotted against scale; complexity is the total area under the curve. MSE of frontal EEG recordings was computed in 50 patients ≥ age 60 before and during surgery. Average MSE was higher intra-operatively than pre-operatively (p = 0.0003). However, intraoperative EEG MSE was lower than preoperative MSE at smaller scales, but higher at larger scales (interaction p < 0.001), creating a crossover point where, by definition, preoperative, and intraoperative MSE curves met. Overall, EEG complexity was not associated with delirium or attention. In 42/50 patients with single crossover points, the scale at which the intraoperative and preoperative entropy curves crossed showed an inverse relationship with delirium-severity score change (Spearman ρ = -0.31, p = 0.054). Thus, average EEG complexity increases intra-operatively in older adults, but is scale dependent. The scale at which preoperative and intraoperative complexity is equal (i.e., the crossover point) may predict delirium. Future studies should assess whether the crossover point represents changes in neural control mechanisms that predispose patients to postoperative delirium.

dc.identifier.issn

1662-5137

dc.identifier.issn

1662-5137

dc.identifier.uri

https://hdl.handle.net/10161/33133

dc.language

eng

dc.publisher

Frontiers Media SA

dc.relation.ispartof

Frontiers in systems neuroscience

dc.relation.isversionof

10.3389/fnsys.2021.718769

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

anesthesia

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attention

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cognition

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complexity

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delirium

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electroencephalogram (EEG)

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perioperative medicine

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resilience

dc.title

Electroencephalogram-Based Complexity Measures as Predictors of Post-operative Neurocognitive Dysfunction.

dc.type

Journal article

duke.contributor.orcid

Acker, Leah|0000-0002-5534-6020

duke.contributor.orcid

Roberts, Ken|0000-0002-8033-0864

duke.contributor.orcid

Berger, Miles|0000-0002-2386-5061

duke.contributor.orcid

Colon-Emeric, Cathleen|0000-0001-7681-8624

duke.contributor.orcid

Devinney, Michael|0000-0003-3906-6421

duke.contributor.orcid

Au, Sandra|0000-0002-7924-3982

duke.contributor.orcid

Woldorff, Marty G|0000-0002-2683-4551

duke.contributor.orcid

Whitson, Heather E|0000-0002-8417-4846

pubs.begin-page

718769

pubs.organisational-group

Duke

pubs.organisational-group

School of Medicine

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Trinity College of Arts & Sciences

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Staff

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Basic Science Departments

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Clinical Science Departments

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Institutes and Centers

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Neurobiology

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Anesthesiology

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Anesthesiology, Critical Care Medicine

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Anesthesiology, Neuroanesthesia

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Medicine

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Ophthalmology

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Psychiatry & Behavioral Sciences

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Medicine, Gastroenterology

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Medicine, Geriatrics and Palliative Care

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Ophthalmology, Vitreoretinal Diseases & Surgery

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Psychology & Neuroscience

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University Initiatives & Academic Support Units

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University Institutes and Centers

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Duke Institute for Brain Sciences

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Duke-UNC Brain Imaging and Analysis Center

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Neurology

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Center for the Study of Aging and Human Development

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Initiatives

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Duke Science & Society

pubs.organisational-group

Center for Cognitive Neuroscience

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Head and Neck Surgery & Communication Sciences

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Psychiatry & Behavioral Sciences, Behavioral Medicine & Neurosciences

pubs.publication-status

Published

pubs.volume

15

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