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. 2023 Aug;37(12):2518-2526.
doi: 10.1038/s41433-022-02366-y. Epub 2022 Dec 28.

Artificial intelligence for the diagnosis of retinopathy of prematurity: A systematic review of current algorithms

Affiliations

Artificial intelligence for the diagnosis of retinopathy of prematurity: A systematic review of current algorithms

Ashwin Ramanathan et al. Eye (Lond). 2023 Aug.

Abstract

Background/objectives: With the increasing survival of premature infants, there is an increased demand to provide adequate retinopathy of prematurity (ROP) services. Wide field retinal imaging (WFDRI) and artificial intelligence (AI) have shown promise in the field of ROP and have the potential to improve the diagnostic performance and reduce the workload for screening ophthalmologists. The aim of this review is to systematically review and provide a summary of the diagnostic characteristics of existing deep learning algorithms.

Subject/methods: Two authors independently searched the literature, and studies using a deep learning system from retinal imaging were included. Data were extracted, assessed and reported using PRISMA guidelines.

Results: Twenty-seven studies were included in this review. Nineteen studies used AI systems to diagnose ROP, classify the staging of ROP, diagnose the presence of pre-plus or plus disease, or assess the quality of retinal images. The included studies reported a sensitivity of 71%-100%, specificity of 74-99% and area under the curve of 91-99% for the primary outcome of the study. AI techniques were comparable to the assessment of ophthalmologists in terms of overall accuracy and sensitivity. Eight studies evaluated vascular severity scores and were able to accurately differentiate severity using an automated classification score.

Conclusion: Artificial intelligence for ROP diagnosis is a growing field, and many potential utilities have already been identified, including the presence of plus disease, staging of disease and a new automated severity score. AI has a role as an adjunct to clinical assessment; however, there is insufficient evidence to support its use as a sole diagnostic tool currently.

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Conflict of interest statement

The authors declare no competing interests.

Figures

Fig. 1
Fig. 1. Diagrammatic representation of deep learning frameworks.
Key features of Artificial Neural Network and Convolutional Neural Network.
Fig. 2
Fig. 2. PRISMA flow diagram.
Graphical representation of the flow of citations reviewed in the course of this Systematic Review.

References

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