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New research · Ophthalmology
NPJ digital medicine · 5d
AI / informaticsNPJ digital medicine · 2026

IVCM-Insight: automated interactive interpretation of in vivo confocal microscopy.

Zijun Zhang, Shangyang Jiang, Zhiqun Wang … Qingfeng Liang
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OphthalmologyAI / informatics

Artificial intelligence system IVCM-Insight classified corneal microscopy findings with high accuracy.

IVCM-Insight: automated interactive interpretation of in vivo confocal microscopy.

Zijun Zhang … Qingfeng Liang
NPJ digital medicine · 2026
Background

In vivo confocal microscopy (IVCM) is a critical ophthalmic examination that provides in vivo cytological and neurological information essential for diagnosing corneal and certain systemic diseases, but its clinical utility is limited by time-consuming interpretation and the need for subspecialty expertise.

0.96
Results
0.96
Artificial intelligence correctly matched expert diagnoses on corneal scans almost every time
More results

Based on 30,368 IVCM images and 4155 paired clinical reports, the model was trained with contrastive alignment, image-conditioned language modeling, and multi-image consistency loss to produce structured diagnostic reports while a domain-adapted large language models supported patient-centered question answering.

More results

Automated evaluation showed strong agreement with the reference reports: Bilingual Evaluation Understudy (Bilingual Evaluation Understudy)-1 to Bilingual Evaluation Understudy-4 scores were 0.69, 0.58, 0.47, and 0.41, Recall-Oriented Understudy for Gisting Evaluation (Recall-Oriented Understudy for Gisting Evaluation) was 0.67, Consensus-based Image Description Evaluation (CIDEr) was 1.85, and Metric for Evaluation of Translation with Explicit Ordering (Metric for Evaluation of Translation with Explicit Ordering) was 0.66.

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Conclusion

To our knowledge, IVCM-Insight is the first dedicated artificial intelligence system for comprehensive IVCM interpretation, with potential to enhance diagnostic efficiency, strengthen physician-patient communication, and broaden access to advanced corneal imaging across care settings.

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