AI Article Synopsis

  • A deep learning model was developed for detecting and quantifying cored plaques and cerebral amyloid angiopathies (CAAs) in whole slide images, crucial for neuropathology assessment.
  • The model was trained using an image-tile dataset without manual annotations and performed equally well as neuropathology experts, achieving similar average precision scores for cored plaques and CAAs.
  • This model is accessible for use and can rapidly analyze whole slide images in minutes on standard workstations, making it a practical tool for researchers and pathologists.

Article Abstract

Precise, scalable, and quantitative evaluation of whole slide images is crucial in neuropathology. We release a deep learning model for rapid object detection and precise information on the identification, locality, and counts of cored plaques and cerebral amyloid angiopathies (CAAs). We trained this object detector using a repurposed image-tile dataset without any human-drawn bounding boxes. We evaluated the detector on a new manually-annotated dataset of whole slide images (WSIs) from three institutions, four staining procedures, and four human experts. The detector matched the cohort of neuropathology experts, achieving 0.64 (model) vs. 0.64 (cohort) average precision (AP) for cored plaques and 0.75 vs. 0.51 AP for CAAs at a 0.5 IOU threshold. It provided count and locality predictions that correlated with gold-standard CERAD-like WSI scoring (p=0.07± 0.10). The openly-available model can quickly score WSIs in minutes without a GPU on a standard workstation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9882138PMC
http://dx.doi.org/10.1101/2023.01.13.524019DOI Listing

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