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Log Focal Frequency Loss for Bioimage Restoration

Quantitative Methods 2026-01-30 v1

Abstract

Image restoration of biological structures in microscopy poses unique challenges for preserving fine textures and sharp edges. While recent GAN-based image restoration formulations have introduced frequency-domain losses for natural images, microscopy images pose distinct challenges with large dynamic ranges and sparse but critical structures with spatially-variable contrast. Inspired by the principle of logarithmic perception in human vision, we propose a log focal frequency loss (LFFL) tailored for microscopy restoration. This loss combines adaptive spectral weighting from log-space differences with log-dampened error measurement, ensuring balanced reconstruction across all frequency bands while preserving both structural coherence and fine details. We tested our GAN-based framework on two use-cases with real ground-truths: deblurring of fluorescence images of cell nuclei on microgroove substrates and denoising of zebrafish embryo images from the FMD dataset. Compared to training with only spatial-domain losses and with existing frequency-domain losses, our method achieves improvements across several quality metrics. Code is available at github.com/xjzhaang/log-focal-frequency-loss.

Keywords

Cite

@article{arxiv.2601.20878,
  title  = {Log Focal Frequency Loss for Bioimage Restoration},
  author = {Xingjian Zhang and Claire Leclech and Louison Blivet-Bailly and Abdul I. Barakat and Elsa D. Angelini},
  journal= {arXiv preprint arXiv:2601.20878},
  year   = {2026}
}

Comments

This paper has been accepted to IEEE ISBI 2026

R2 v1 2026-07-01T09:24:24.207Z