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[ARTICLE · art-69628] src=arxiv.org ↗ pub= topic=computer-vision verified=true sentiment=· neutral

A Unified Variational Framework for Deep Weakly Supervised Image Segmentation

A new unified variational framework for deep weakly supervised image segmentation uses a simplex-constrained Potts model with a smooth perimeter regularizer to create a convex, smooth energy functional that serves as a training loss. The method incorporates sparse labels via a fuzzy membership function in a Reproducing Kernel Hilbert Space, achieving comparable performance to full supervision without requiring ground-truth segmentation images.

read1 min views1 publishedJul 23, 2026

arXiv:2607.19669v1 Announce Type: new Abstract: We propose a unified variational framework for image segmentation under sparse pixel-level supervision. Our method is based on a simplex-constrained Potts model with a smooth perimeter regularizer, yielding a convex, smooth energy functional that can be used as a training loss in weakly supervised deep learning paradigms or optimized efficiently using iterative methods. Sparse labels are incorporated into the data fidelity term by constructing a fuzzy membership function via a function extension problem in a Reproducing Kernel Hilbert Space (RKHS), which can effectively capture inhomogeneous intensity statistics. The derived discrete loss for training standard networks demonstrates robustness and consistent improvements over non-training and partial cross-entropy (PCE) baselines in experiments, achieving comparable performance without requiring ground-truth segmentation images.

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