AI Article Synopsis

  • The study aimed to evaluate if a new algorithm improves detection of microaneurysms in retinal images compared to an earlier method.
  • Methods involved enhancing digital retinography images, applying multitolerance thresholding, and training a Fuzzy Artmap neural network with datasets.
  • Results showed the new algorithm detected fewer microaneurysms than ophthalmologists but improved sensitivity and reduced false positives compared to the previous version, indicating better performance yet highlighting the need for further enhancements in identifying initial seeds.

Article Abstract

Objective: To assess whether the methodological changes of this new algorithm improves the results of a previously presented strategy.

Methods: We enhance the image and filter out the green channel of the digital color retinography. Multitolerance thresholding was applied to obtain candidate points and make a seed growing region by varying intensities. We took 15 characteristics from each region to train a Fuzzy Artmap neural network using 42 retinal photographs. This network was then applied in the study of 11 good quality retinal photographs included in the diabetic retinopathy early detection screening program, with initial stages of retinopathy, obtained with the Topcon NW200 non-mydriatic retinal camera.

Results: Two experienced ophthalmologists detected 52 microaneurysms in 11 images. The algorithm detected 39 microaneurysms and 3,752 more regions, confirming 38 microaneurysm and 135 false positives. The sensitivity is improved compared to the previous algorithm, from 60.53 to 73.08%. False positives have dropped from 41.8 to 12.27 per image.

Conclusions: The new algorithm is better than the previous one, but there is still room for improvement, especially in the initial determination of seeds.

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Source
http://dx.doi.org/10.1016/j.oftal.2012.04.013DOI Listing

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