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On the Generalization Properties of Diffusion Models

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arxiv 2311.01797 v4 pith:M6PZDYWT submitted 2023-11-03 cs.LG stat.ML

classification cs.LGstat.ML
keywords generalizationmodelsdiffusiontheoreticalapplicationsestablishestimatesmodel
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abstract

Diffusion models are a class of generative models that serve to establish a stochastic transport map between an empirically observed, yet unknown, target distribution and a known prior. Despite their remarkable success in real-world applications, a theoretical understanding of their generalization capabilities remains underdeveloped. This work embarks on a comprehensive theoretical exploration of the generalization attributes of diffusion models. We establish theoretical estimates of the generalization gap that evolves in tandem with the training dynamics of score-based diffusion models, suggesting a polynomially small generalization error ($O(n^{-2/5}+m^{-4/5})$) on both the sample size $n$ and the model capacity $m$, evading the curse of dimensionality (i.e., not exponentially large in the data dimension) when early-stopped. Furthermore, we extend our quantitative analysis to a data-dependent scenario, wherein target distributions are portrayed as a succession of densities with progressively increasing distances between modes. This precisely elucidates the adverse effect of "modes shift" in ground truths on the model generalization. Moreover, these estimates are not solely theoretical constructs but have also been confirmed through numerical simulations. Our findings contribute to the rigorous understanding of diffusion models' generalization properties and provide insights that may guide practical applications.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Enhancing Low Back Pain Assessment with Diffusion Models for Lumbar Spine MRI Segmentation

    cs.CV 2026-08 conditional novelty 4.0 of 10

    A diffusion model with a nnU-Net presegmentation step segments lumbar spine MRI at accuracy comparable to nnU-Net, with improved intervertebral disc Dice and generated uncertainty heatmaps.

  2. Diffusion-Based Semantic Segmentation of Lumbar Spine MRI Scans of Lower Back Pain Patients

    eess.IV 2024-11 conditional novelty 4.0 of 10

    SpineSegDiff, a diffusion model with an nnU-Net pre-segmentation prior, achieves slightly higher Dice scores than nnU-Net and IISDM on the SPIDER lumbar MRI dataset, especially for intervertebral discs.

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