English

COL0RME: COvariance-based $\ell_0$ super-Resolution Microscopy with intensity Estimation

Optimization and Control 2022-07-13 v2 Image and Video Processing Optics

Abstract

Super-resolution light microscopy overcomes the physical barriers due to light diffraction, allowing for the observation of otherwise indistinguishable subcellular entities. However, the specific acquisition conditions required by state-of-the-art super-resolution methods to achieve adequate spatio-temporal resolution are often very challenging. Exploiting molecules fluctuations allows good spatio-temporal resolution live-cell imaging by means of common microscopes and conventional fluorescent dyes. In this work, we present the method COL0RME for COvariance-based 0\ell_0 super-Resolution Microscopy with intensity Estimation. It codifies the assumption of sparse distribution of the fluorescent molecules as well as the temporal and spatial independence between emitters via a non-convex optimization problem formulated in the covariance domain. In order to deal with real data, the proposed approach also estimates background and noise statistics. It also includes a final estimation step where intensity information is retrieved, which is valuable for biological interpretation and future applications to super-resolution imaging.

Cite

@article{arxiv.2010.13477,
  title  = {COL0RME: COvariance-based $\ell_0$ super-Resolution Microscopy with intensity Estimation},
  author = {Vasiliki Stergiopoulou and José Henrique de Morais Goulart and Sébastien Schaub and Luca Calatroni and Laure Blanc-Féraud},
  journal= {arXiv preprint arXiv:2010.13477},
  year   = {2022}
}
R2 v1 2026-06-23T19:38:53.143Z