Time-resolved fluorescence imaging is a key tool in biomedical applications, as it allows to non-invasively obtain functional and structural information. However, the big amount of collected data introduces challenges in both acquisition speed and processing needs. Here, we introduce a novel technique that allows to reconstruct a Giga-voxel 4D hypercube in a fast manner while only measuring 0.03 % of the information. The system combines two single-pixel cameras and a conventional 2D array detector working in parallel. Data fusion techniques are introduced to combine the individual 2D and 3D projections acquired by each sensor in the final high-resolution 4D hypercube, which can be used to identify different fluorophore species by their spectral and temporal signatures.
@article{arxiv.2107.12337,
title = {Giga-voxel multidimensional fluorescence imaging combining single-pixel detection and data fusion},
author = {Fernando Soldevila and Armin Lenz and Alberto Ghezzi and Andrea Farina and Cosimo D'Andrea and Enrique Tajahuerce},
journal= {arXiv preprint arXiv:2107.12337},
year = {2021}
}