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Generalizability of electroencephalographic interpretation using artificial intelligence: An external validation study.

Publication ,  Journal Article
Mansilla, D; Tveit, J; Aurlien, H; Avigdor, T; Ros-Castello, V; Ho, A; Abdallah, C; Gotman, J; Beniczky, S; Frauscher, B
Published in: Epilepsia
October 2024

OBJECTIVE: The automated interpretation of clinical electroencephalograms (EEGs) using artificial intelligence (AI) holds the potential to bridge the treatment gap in resource-limited settings and reduce the workload at specialized centers. However, to facilitate broad clinical implementation, it is essential to establish generalizability across diverse patient populations and equipment. We assessed whether SCORE-AI demonstrates diagnostic accuracy comparable to that of experts when applied to a geographically different patient population, recorded with distinct EEG equipment and technical settings. METHODS: We assessed the diagnostic accuracy of a "fixed-and-frozen" AI model, using an independent dataset and external gold standard, and benchmarked it against three experts blinded to all other data. The dataset comprised 50% normal and 50% abnormal routine EEGs, equally distributed among the four major classes of EEG abnormalities (focal epileptiform, generalized epileptiform, focal nonepileptiform, and diffuse nonepileptiform). To assess diagnostic accuracy, we computed sensitivity, specificity, and accuracy of the AI model and the experts against the external gold standard. RESULTS: We analyzed EEGs from 104 patients (64 females, median age = 38.6 [range = 16-91] years). SCORE-AI performed equally well compared to the experts, with an overall accuracy of 92% (95% confidence interval [CI] = 90%-94%) versus 94% (95% CI = 92%-96%). There was no significant difference between SCORE-AI and the experts for any metric or category. SCORE-AI performed well independently of the vigilance state (false classification during awake: 5/41 [12.2%], false classification during sleep: 2/11 [18.2%]; p = .63) and normal variants (false classification in presence of normal variants: 4/14 [28.6%], false classification in absence of normal variants: 3/38 [7.9%]; p = .07). SIGNIFICANCE: SCORE-AI achieved diagnostic performance equal to human experts in an EEG dataset independent of the development dataset, in a geographically distinct patient population, recorded with different equipment and technical settings than the development dataset.

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Published In

Epilepsia

DOI

EISSN

1528-1167

Publication Date

October 2024

Volume

65

Issue

10

Start / End Page

3028 / 3037

Location

United States

Related Subject Headings

  • Young Adult
  • Sensitivity and Specificity
  • Reproducibility of Results
  • Neurology & Neurosurgery
  • Middle Aged
  • Male
  • Humans
  • Female
  • Epilepsy
  • Electroencephalography
 

Citation

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ICMJE
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Mansilla, D., Tveit, J., Aurlien, H., Avigdor, T., Ros-Castello, V., Ho, A., … Frauscher, B. (2024). Generalizability of electroencephalographic interpretation using artificial intelligence: An external validation study. Epilepsia, 65(10), 3028–3037. https://doi.org/10.1111/epi.18082
Mansilla, Daniel, Jesper Tveit, Harald Aurlien, Tamir Avigdor, Victoria Ros-Castello, Alyssa Ho, Chifaou Abdallah, Jean Gotman, Sándor Beniczky, and Birgit Frauscher. “Generalizability of electroencephalographic interpretation using artificial intelligence: An external validation study.Epilepsia 65, no. 10 (October 2024): 3028–37. https://doi.org/10.1111/epi.18082.
Mansilla D, Tveit J, Aurlien H, Avigdor T, Ros-Castello V, Ho A, et al. Generalizability of electroencephalographic interpretation using artificial intelligence: An external validation study. Epilepsia. 2024 Oct;65(10):3028–37.
Mansilla, Daniel, et al. “Generalizability of electroencephalographic interpretation using artificial intelligence: An external validation study.Epilepsia, vol. 65, no. 10, Oct. 2024, pp. 3028–37. Pubmed, doi:10.1111/epi.18082.
Mansilla D, Tveit J, Aurlien H, Avigdor T, Ros-Castello V, Ho A, Abdallah C, Gotman J, Beniczky S, Frauscher B. Generalizability of electroencephalographic interpretation using artificial intelligence: An external validation study. Epilepsia. 2024 Oct;65(10):3028–3037.
Journal cover image

Published In

Epilepsia

DOI

EISSN

1528-1167

Publication Date

October 2024

Volume

65

Issue

10

Start / End Page

3028 / 3037

Location

United States

Related Subject Headings

  • Young Adult
  • Sensitivity and Specificity
  • Reproducibility of Results
  • Neurology & Neurosurgery
  • Middle Aged
  • Male
  • Humans
  • Female
  • Epilepsy
  • Electroencephalography