CVMar 25, 2025

LEMON: A Large Endoscopic MONocular Dataset and Foundation Model for Perception in Surgical Settings

arXiv:2503.19740v313 citationsh-index: 13
Originality Synthesis-oriented
AI Analysis

This provides a foundational resource for surgical AI research, potentially accelerating autonomous robotic surgery systems, though it is incremental as it builds on existing data and model paradigms.

The authors tackled the problem of limited surgical video datasets by introducing LEMON, a large dataset with over 4K videos and 938 hours of footage, and LemonFM, a foundation model that achieved significant performance gains, such as +9.5pp in surgical phase recognition and +5.3pp in tool detection, across multiple downstream tasks.

Traditional open-access datasets focusing on surgical procedures are often limited by their small size, typically consisting of fewer than 100 videos and less than 30 hours of footage, which leads to poor model generalization. To address this constraint, a new dataset called LEMON has been compiled using a novel aggregation pipeline that collects high-resolution videos from online sources. Featuring an extensive collection of over 4K surgical videos totaling 938 hours (85 million frames) of high-quality footage across multiple procedure types, LEMON offers a comprehensive resource surpassing existing alternatives in size and scope, including two novel downstream tasks. To demonstrate the effectiveness of this diverse dataset, we introduce LemonFM, a foundation model pretrained on LEMON using a novel self-supervised augmented knowledge distillation approach. LemonFM consistently outperforms existing surgical foundation models across four downstream tasks and six datasets, achieving significant gains in surgical phase recognition (+9.5pp, +9.4pp, and +8.4pp of Jaccard in AutoLaparo, M2CAI16, and Cholec80), surgical action recognition (+4.4pp of mAP in CholecT50), surgical tool presence detection (+5.3pp and +10.2pp of mAP in Cholec80 and GraSP), and surgical semantic segmentation (+8.3pp of mDice in CholecSeg8k). LEMON and LemonFM will serve as foundational resources for the research community and industry, accelerating progress in developing autonomous robotic surgery systems and ultimately contributing to safer and more accessible surgical care worldwide.

Code Implementations1 repo
Foundations

The foundational work for this paper's niche, ranked by how specifically the neighbourhood builds on it — not by global fame.

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