English

DM-QPMNET: Dual-modality fusion network for cell segmentation in quantitative phase microscopy

Computer Vision and Pattern Recognition 2025-11-04 v1 Artificial Intelligence

Abstract

Cell segmentation in single-shot quantitative phase microscopy (ssQPM) faces challenges from traditional thresholding methods that are sensitive to noise and cell density, while deep learning approaches using simple channel concatenation fail to exploit the complementary nature of polarized intensity images and phase maps. We introduce DM-QPMNet, a dual-encoder network that treats these as distinct modalities with separate encoding streams. Our architecture fuses modality-specific features at intermediate depth via multi-head attention, enabling polarized edge and texture representations to selectively integrate complementary phase information. This content-aware fusion preserves training stability while adding principled multi-modal integration through dual-source skip connections and per-modality normalization at minimal overhead. Our approach demonstrates substantial improvements over monolithic concatenation and single-modality baselines, showing that modality-specific encoding with learnable fusion effectively exploits ssQPM's simultaneous capture of complementary illumination and phase cues for robust cell segmentation.

Keywords

Cite

@article{arxiv.2511.00218,
  title  = {DM-QPMNET: Dual-modality fusion network for cell segmentation in quantitative phase microscopy},
  author = {Rajatsubhra Chakraborty and Ana Espinosa-Momox and Riley Haskin and Depeng Xu and Rosario Porras-Aguilar},
  journal= {arXiv preprint arXiv:2511.00218},
  year   = {2025}
}

Comments

5 pages, 4 figures

R2 v1 2026-07-01T07:16:28.435Z