Non-inferiority of Deep Learning Acute Ischemic Stroke Segmentation on Non-Contrast CT Compared to Expert Neuroradiologists
Sophie Ostmeier, Brian Axelrod, Benjamin F.J. Verhaaren, Soren, Christensen, Abdelkader Mahammedi, Yongkai Liu, Benjamin Pulli, Li-Jia Li,, Greg Zaharchuk, Jeremy J. Heit

TL;DR
This study demonstrates that a deep learning model can accurately segment acute ischemic stroke regions on non-contrast CT scans, achieving performance comparable to expert neuroradiologists, suggesting potential for clinical application.
Contribution
The paper introduces a CNN-based segmentation model trained on expert annotations that is non-inferior to neuroradiologists in delineating ischemic stroke regions on NCCT.
Findings
CNN achieved Surface Dice of 0.46+-0.09 at 5mm tolerance
Model's agreement was statistically non-inferior to inter-expert agreement
Deep learning model performs comparably to experts in stroke segmentation
Abstract
To determine if a convolutional neural network (CNN) deep learning model can accurately segment acute ischemic changes on non-contrast CT compared to neuroradiologists. Non-contrast CT (NCCT) examinations from 232 acute ischemic stroke patients who were enrolled in the DEFUSE 3 trial were included in this study. Three experienced neuroradiologists independently segmented hypodensity that reflected the ischemic core on each scan. The neuroradiologist with the most experience (expert A) served as the ground truth for deep learning model training. Two additional neuroradiologists (experts B and C) segmentations were used for data testing. The 232 studies were randomly split into training and test sets. The training set was further randomly divided into 5 folds with training and validation sets. A 3-dimensional CNN architecture was trained and optimized to predict the segmentations of…
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Taxonomy
TopicsAcute Ischemic Stroke Management · Advanced X-ray and CT Imaging · Medical Imaging and Analysis
MethodsTest
