NeurIPS 2025spotlight0 citations

OCTDiff: Bridged Diffusion Model for Portable OCT Super-Resolution and Enhancement

Ye Tian, Angela McCarthy, Gabriel Gomide, Nancy Liddle, Jedrzej Golebka, Royce Chen, Jeff Liebmann, Kaveri A. Thakoor

Abstract

Medical imaging super-resolution is critical for improving diagnostic utility and reducing costs, particularly for low-cost modalities such as portable Optical Coherence Tomography (OCT). We propose OCTDiff, a bridged diffusion model designed to enhance image resolution and quality from portable OCT devices. Our image-to-image diffusion framework addresses key challenges in the conditional generation process of denoising diffusion probabilistic models (DDPMs). We introduce Adaptive Noise Aggregation (ANA), a novel module to improve denoising dynamics within the reverse diffusion process. Additionally, we integrate Multi-Scale Cross-Attention (MSCA) into the U-Net backbone to capture local dependencies across spatial resolutions. To address overfitting on small clinical datasets and to preserve fine structural details essential for retinal diagnostics, we design a customized loss function guided by clinical quality scores. OCTDiff outperforms convolutional baselines and standard DDPMs, achieving state-of-the-art performance on clinical portable OCT datasets. Our model and its downstream applications have the potential to generalize to other medical imaging modalities and revolutionize the current workflow of ophthalmic diagnostics. The code is available at https://github.com/AI4VSLab/OCTDiff.

Super-resolutionMedical ImagingDiffusion ModelNoise AggregationComputer Vision
BibTeX
@inproceedings{
tian2025octdiff,
title={{OCTD}iff: Bridged Diffusion Model for Portable {OCT} Super-Resolution and Enhancement},
author={Ye Tian and Angela McCarthy and Gabriel Gomide and Nancy Liddle and Jedrzej Golebka and Royce Chen and Jeff Liebmann and Kaveri A. Thakoor},
booktitle={The Thirty-ninth Annual Conference on Neural Information Processing Systems},
year={2025},
url={https://openreview.net/forum?id=VN5bMTfSZS}
}
OCTDiff: Bridged Diffusion Model for Portable OCT Super-Resolution and Enhancement · NeurIPS 2025