Papers › Dense Depth Estimation in Monocular Endoscopy with Self-supervised Learning Methods

Dense Depth Estimation in Monocular Endoscopy with Self-supervised Learning Methods

20 Feb 2019arXiv:1902.07766archive 2025-07-28

Xingtong Liu, Ayushi Sinha, Masaru Ishii, Gregory D. Hager, Austin Reiter, Russell H. Taylor, Mathias Unberath

We present a self-supervised approach to training convolutional neural networks for dense depth estimation from monocular endoscopy data without a priori modeling of anatomy or shading. Our method only requires monocular endoscopic videos and a multi-view stereo method, e.g., structure from motion, to supervise learning in a sparse manner. Consequently, our method requires neither manual labeling nor patient computed tomography (CT) scan in the training and application phases. In a cross-patient experiment using CT scans as groundtruth, the proposed method achieved submillimeter mean residual error. In a comparison study to recent self-supervised depth estimation methods designed for natural video on in vivo sinus endoscopy data, we demonstrate that the proposed approach outperforms the previous methods by a large margin. The source code for this work is publicly available online at https://github.com/lppllppl920/EndoscopyDepthEstimation-Pytorch.

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lppllppl920/EndoscopyDepthEstimation-Pytorch officialmentioned in papermentioned on GitHubpytorchGPL-3.0 report

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AnatomyComputed Tomography (CT)Depth EstimationSelf-Supervised Learning

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