AI Article Synopsis

  • Retinal images are important for diagnosing diseases like diabetes and glaucoma, but small retinal vessels often get overlooked in segmentation methods.
  • The study introduces a new approach, called UN-LPCOS, that combines local phase congruency and orientation scores with a U-Net deep learning network to better segment these small vessels.
  • Validation on the DRIVE dataset and Maastricht Study shows that this method excels at identifying both overall vessel structures and small retinal vessels, enhancing early disease detection.

Article Abstract

Retinal images have been proven significant in diagnosing multiple diseases such as diabetes, glaucoma, and hypertension. Retinal vessel segmentation is crucial for the quantitative analysis of retinal images. However, current methods mainly concentrate on the segmentation performance of overall retinal vessel structures. The small vessels do not receive enough attention due to their small percentage in the full retinal images. Small retinal vessels are much more sensitive to the blood circulation system and have great significance in the early diagnosis and warning of various diseases. This paper combined two unsupervised methods, local phase congruency (LPC) and orientation scores (OS), with a deep learning network based on the U-Net as attention. And we proposed the U-Net using local phase congruency and orientation scores (UN-LPCOS), which showed a remarkable ability to identify and segment small retinal vessels. A new metric called sensitivity on a small ship ( ) was also proposed to evaluate the methods' performance on the small vessel segmentation. Our strategy was validated on both the DRIVE dataset and the data from Maastricht Study and achieved outstanding segmentation performance on both the overall vessel structure and small vessels.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014569PMC
http://dx.doi.org/10.3389/fmed.2023.1038534DOI Listing

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