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Development of Expert-Level Classification of Seizures and Rhythmic and Periodic Patterns During EEG Interpretation.

Authors :
Jing J
Ge W
Hong S
Fernandes MB
Lin Z
Yang C
An S
Struck AF
Herlopian A
Karakis I
Halford JJ
Ng MC
Johnson EL
Appavu BL
Sarkis RA
Osman G
Kaplan PW
Dhakar MB
Arcot Jayagopal L
Sheikh Z
Taraschenko O
Schmitt S
Haider HA
Kim JA
Swisher CB
Gaspard N
Cervenka MC
Rodriguez Ruiz AA
Lee JW
Tabaeizadeh M
Gilmore EJ
Nordstrom K
Yoo JY
Holmes MG
Herman ST
Williams JA
Pathmanathan J
Nascimento FA
Fan Z
Nasiri S
Shafi MM
Cash SS
Hoch DB
Cole AJ
Rosenthal ES
Zafar SF
Sun J
Westover MB
Source :
Neurology [Neurology] 2023 Apr 25; Vol. 100 (17), pp. e1750-e1762. Date of Electronic Publication: 2023 Mar 06.
Publication Year :
2023

Abstract

Background and Objectives: Seizures (SZs) and other SZ-like patterns of brain activity can harm the brain and contribute to in-hospital death, particularly when prolonged. However, experts qualified to interpret EEG data are scarce. Prior attempts to automate this task have been limited by small or inadequately labeled samples and have not convincingly demonstrated generalizable expert-level performance. There exists a critical unmet need for an automated method to classify SZs and other SZ-like events with expert-level reliability. This study was conducted to develop and validate a computer algorithm that matches the reliability and accuracy of experts in identifying SZs and SZ-like events, known as "ictal-interictal-injury continuum" (IIIC) patterns on EEG, including SZs, lateralized and generalized periodic discharges (LPD, GPD), and lateralized and generalized rhythmic delta activity (LRDA, GRDA), and in differentiating these patterns from non-IIIC patterns.<br />Methods: We used 6,095 scalp EEGs from 2,711 patients with and without IIIC events to train a deep neural network, SPaRCNet , to perform IIIC event classification. Independent training and test data sets were generated from 50,697 EEG segments, independently annotated by 20 fellowship-trained neurophysiologists. We assessed whether SPaRCNet performs at or above the sensitivity, specificity, precision, and calibration of fellowship-trained neurophysiologists for identifying IIIC events. Statistical performance was assessed by the calibration index and by the percentage of experts whose operating points were below the model's receiver operating characteristic curves (ROCs) and precision recall curves (PRCs) for the 6 pattern classes.<br />Results: SPaRCNet matches or exceeds most experts in classifying IIIC events based on both calibration and discrimination metrics. For SZ, LPD, GPD, LRDA, GRDA, and "other" classes, SPaRCNet exceeds the following percentages of 20 experts-ROC: 45%, 20%, 50%, 75%, 55%, and 40%; PRC: 50%, 35%, 50%, 90%, 70%, and 45%; and calibration: 95%, 100%, 95%, 100%, 100%, and 80%, respectively.<br />Discussion: SPaRCNet is the first algorithm to match expert performance in detecting SZs and other SZ-like events in a representative sample of EEGs. With further development, SPaRCNet may thus be a valuable tool for an expedited review of EEGs.<br />Classification of Evidence: This study provides Class II evidence that among patients with epilepsy or critical illness undergoing EEG monitoring, SPaRCNet can differentiate (IIIC) patterns from non-IIIC events and expert neurophysiologists.<br /> (© 2023 American Academy of Neurology.)

Details

Language :
English
ISSN :
1526-632X
Volume :
100
Issue :
17
Database :
MEDLINE
Journal :
Neurology
Publication Type :
Academic Journal
Accession number :
36878708
Full Text :
https://doi.org/10.1212/WNL.0000000000207127