Publication | Closed Access
Enhancing the Accuracy of Glaucoma Detection from OCT Probability Maps using Convolutional Neural Networks
70
Citations
11
References
2019
Year
Unknown Venue
Convolutional Neural NetworkEngineeringNerve Fiber LayerOct Probability MapsImage ClassificationImage AnalysisRetinaProbability MapsVision RecognitionMachine VisionOphthalmologyVisual DiagnosisDeep LearningMedical Image ComputingOptical Image RecognitionComputer VisionGlaucoma DetectionBiomedical ImagingConvolutional Neural NetworksNeuroscienceGlaucomaOptical Coherence TomographyMedicine
We describe and assess convolutional neural network (CNN) models for detection of glaucoma based upon optical coherence tomography (OCT) retinal nerve fiber layer (RNFL) probability maps. CNNs pretrained on natural images performed comparably to CNNs trained solely on OCT data, and all models showed high accuracy in detecting glaucoma, with receiver operating characteristic area under the curve (AUC) scores ranging from 0.930 to 0.989. Attention-based heat maps of CNN regions of interest suggest that these models could be improved by incorporation of blood vessel location information. Such CNN models have the potential to work in tandem with human experts to maintain overall eye health and expedite detection of blindness-causing eye disease.
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