Literature DB >> 26943901

Development and Feasibility Testing of a Critical Care EEG Monitoring Database for Standardized Clinical Reporting and Multicenter Collaborative Research.

Jong Woo Lee1, Suzette LaRoche, Hyunmi Choi, Andres A Rodriguez Ruiz, Evan Fertig, Jeffrey M Politsky, Susan T Herman, Tobias Loddenkemper, Arnold J Sansevere, Pearce J Korb, Nicholas S Abend, Joshua L Goldstein, Saurabh R Sinha, Keith E Dombrowski, Eva K Ritzl, Michael B Westover, Jay R Gavvala, Elizabeth E Gerard, Sarah E Schmitt, Jerzy P Szaflarski, Kan Ding, Kevin F Haas, Richard Buchsbaum, Lawrence J Hirsch, Courtney J Wusthoff, Jennifer L Hopp, Cecil D Hahn.   

Abstract

PURPOSE: The rapid expansion of the use of continuous critical care electroencephalogram (cEEG) monitoring and resulting multicenter research studies through the Critical Care EEG Monitoring Research Consortium has created the need for a collaborative data sharing mechanism and repository. The authors describe the development of a research database incorporating the American Clinical Neurophysiology Society standardized terminology for critical care EEG monitoring. The database includes flexible report generation tools that allow for daily clinical use.
METHODS: Key clinical and research variables were incorporated into a Microsoft Access database. To assess its utility for multicenter research data collection, the authors performed a 21-center feasibility study in which each center entered data from 12 consecutive intensive care unit monitoring patients. To assess its utility as a clinical report generating tool, three large volume centers used it to generate daily clinical critical care EEG reports.
RESULTS: A total of 280 subjects were enrolled in the multicenter feasibility study. The duration of recording (median, 25.5 hours) varied significantly between the centers. The incidence of seizure (17.6%), periodic/rhythmic discharges (35.7%), and interictal epileptiform discharges (11.8%) was similar to previous studies. The database was used as a clinical reporting tool by 3 centers that entered a total of 3,144 unique patients covering 6,665 recording days.
CONCLUSIONS: The Critical Care EEG Monitoring Research Consortium database has been successfully developed and implemented with a dual role as a collaborative research platform and a clinical reporting tool. It is now available for public download to be used as a clinical data repository and report generating tool.

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Year:  2016        PMID: 26943901      PMCID: PMC4878836          DOI: 10.1097/WNP.0000000000000230

Source DB:  PubMed          Journal:  J Clin Neurophysiol        ISSN: 0736-0258            Impact factor:   2.177


  23 in total

1.  A new way of building a database of EEG findings.

Authors:  H Aurlien; I O Gjerde; N E Gilhus; O G Hovstad; B Karlsen; H Skeidsvoll
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2.  Interrater reliability of ICU EEG research terminology.

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Review 5.  American Clinical Neurophysiology Society's Standardized Critical Care EEG Terminology: 2012 version.

Authors:  L J Hirsch; S M LaRoche; N Gaspard; E Gerard; A Svoronos; S T Herman; R Mani; H Arif; N Jette; Y Minazad; J F Kerrigan; P Vespa; S Hantus; J Claassen; G B Young; E So; P W Kaplan; M R Nuwer; N B Fountain; F W Drislane
Journal:  J Clin Neurophysiol       Date:  2013-02       Impact factor: 2.177

6.  A computer-based information system for epilepsy and electroencephalography.

Authors:  N B Finnerup; A Fuglsang-Frederiksen; P Røssel; P Jennum
Journal:  Int J Med Inform       Date:  1999-08       Impact factor: 4.046

Review 7.  Which EEG patterns in coma are nonconvulsive status epilepticus?

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Review 8.  Pediatric ICU EEG monitoring: current resources and practice in the United States and Canada.

Authors:  Sarah M Sanchez; Jessica Carpenter; Kevin E Chapman; Dennis J Dlugos; William B Gallentine; Christopher C Giza; Joshua L Goldstein; Cecil D Hahn; Sudha K Kessler; Tobias Loddenkemper; James J Riviello; Nicholas S Abend
Journal:  J Clin Neurophysiol       Date:  2013-04       Impact factor: 2.177

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Review 10.  Detection of electrographic seizures with continuous EEG monitoring in critically ill patients.

Authors:  J Claassen; S A Mayer; R G Kowalski; R G Emerson; L J Hirsch
Journal:  Neurology       Date:  2004-05-25       Impact factor: 9.910

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5.  Early EEG hyperexcitability is associated with decreased survival in newly diagnosed IDH-wildtype glioma.

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6.  Association of an Electroencephalography-Based Risk Score With Seizure Probability in Hospitalized Patients.

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7.  Electrographic Seizures and Outcome in Critically Ill Children.

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8.  American Clinical Neurophysiology Society's Standardized Critical Care EEG Terminology: 2021 Version.

Authors:  Lawrence J Hirsch; Michael W K Fong; Markus Leitinger; Suzette M LaRoche; Sandor Beniczky; Nicholas S Abend; Jong Woo Lee; Courtney J Wusthoff; Cecil D Hahn; M Brandon Westover; Elizabeth E Gerard; Susan T Herman; Hiba Arif Haider; Gamaleldin Osman; Andres Rodriguez-Ruiz; Carolina B Maciel; Emily J Gilmore; Andres Fernandez; Eric S Rosenthal; Jan Claassen; Aatif M Husain; Ji Yeoun Yoo; Elson L So; Peter W Kaplan; Marc R Nuwer; Michel van Putten; Raoul Sutter; Frank W Drislane; Eugen Trinka; Nicolas Gaspard
Journal:  J Clin Neurophysiol       Date:  2021-01-01       Impact factor: 2.590

9.  Continuous Electroencephalography (cEEG) Monitoring and Outcomes of Critically Ill Patients.

Authors:  Ayaz M Khawaja; Guoqiao Wang; Gary R Cutter; Jerzy P Szaflarski
Journal:  Med Sci Monit       Date:  2017-02-04

Review 10.  Population of the ictal-interictal zone: The significance of periodic and rhythmic activity.

Authors:  Emily L Johnson; Peter W Kaplan
Journal:  Clin Neurophysiol Pract       Date:  2017-05-26
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