Self-Supervised Image Denoising Using Implicit Deep Denoiser Prior
Abstract
We devise a new regularization for denoising with self-supervised learning. The regularization uses a deep image prior learned by the network, rather than a traditional predefined prior. Specifically, we treat the output of the network as a ``prior'' that we again denoise after ``re-noising.'' The network is updated to minimize the discrepancy between the twice-denoised image and its prior. We demonstrate that this regularization enables the network to learn to denoise even if it has not seen any clean images. The effectiveness of our method is based on the fact that CNNs naturally tend to capture low-level image statistics. Since our method utilizes the image prior implicitly captured by the deep denoising CNN to guide denoising, we refer to this training strategy as an Implicit Deep Denoiser Prior (IDDP). IDDP can be seen as a mixture of learning-based methods and traditional model-based denoising methods, in which regularization is adaptively formulated using the output of the network. We apply IDDP to various denoising tasks using only observed corrupted data and show that it achieves better denoising results than other self-supervised denoising methods.
Cite
Text
Lin et al. "Self-Supervised Image Denoising Using Implicit Deep Denoiser Prior." AAAI Conference on Artificial Intelligence, 2023. doi:10.1609/AAAI.V37I2.25245Markdown
[Lin et al. "Self-Supervised Image Denoising Using Implicit Deep Denoiser Prior." AAAI Conference on Artificial Intelligence, 2023.](https://mlanthology.org/aaai/2023/lin2023aaai-self/) doi:10.1609/AAAI.V37I2.25245BibTeX
@inproceedings{lin2023aaai-self,
title = {{Self-Supervised Image Denoising Using Implicit Deep Denoiser Prior}},
author = {Lin, Huangxing and Zhuang, Yihong and Ding, Xinghao and Zeng, Delu and Huang, Yue and Tu, Xiaotong and Paisley, John W.},
booktitle = {AAAI Conference on Artificial Intelligence},
year = {2023},
pages = {1586-1594},
doi = {10.1609/AAAI.V37I2.25245},
url = {https://mlanthology.org/aaai/2023/lin2023aaai-self/}
}