COVIDx-US: An Open-Access Benchmark Dataset of Ultrasound Imaging Data for AI-Driven COVID-19 Analytics

Ashkan Ebadi1,2, Pengcheng Xi2,3, Alexander MacLean2

  • 1Digital Technologies Research Centre, National Research Council Canada, Montreal, QC H3T 2B2, Canada.

Insights

The COVIDx-US dataset offers a valuable resource for developing AI tools to aid in diagnosing COVID-19 using lung ultrasound imaging. This open-access dataset facilitates research in screening, prognosis, and severity assessment for lung conditions.

Area of Science:

  • Medical Imaging
  • Artificial Intelligence
  • Public Health

Background:

  • The COVID-19 pandemic poses significant global health, economic, and socio-physiological challenges.
  • Effective screening, triage, and prognostication are crucial for managing the pandemic.
  • Point-of-care ultrasound (POCUS) is a non-invasive, accessible tool for COVID-19 screening and prognosis.

Purpose of the Study:

  • To introduce COVIDx-US, an open-access benchmark dataset for COVID-19 related lung ultrasound imaging.
  • To support the development of artificial intelligence tools for clinicians in diagnosing and managing COVID-19.
  • To provide a standardized dataset for research into lung ultrasound imaging analysis.

Main Methods:

  • Curated ultrasound imaging data from multiple sources.
  • Dataset version 1.5 includes 173 videos and 21,570 images from 147 patients.
  • Includes cases of COVID-19, non-COVID-19 infections, other lung conditions, and normal controls.

Main Results:

  • COVIDx-US is the first and largest open-access, fully-curated lung ultrasound imaging dataset.
  • The dataset features a standardized lung ultrasound score per video for improved interpretation.
  • Enables research avenues such as severity assessment and AI model development.

Conclusions:

  • COVIDx-US is part of the open-source COVID-Net initiative and will continue to grow.
  • The dataset is reproducible, user-friendly, and scalable due to its modular design.
  • Facilitates research and development of AI-powered diagnostic tools for lung ultrasound imaging.
Abstract

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