Single-objective selective-volume illumination microscopy enables high-contrast light-field imaging
Abstract
The performance of light-field microscopy is improved by selectively illuminating the relevant subvolume of the specimen with a second objective lens [1-3]. Here we advance this approach to a single-objective geometry, using an oblique one-photon illumination path or two-photon illumination to accomplish selective-volume excitation. The elimination of the second orthogonally oriented objective to selectively excite the volume of interest simplifies specimen mounting; yet, this single-objective approach still reduces out-of-volume background, resulting in improvements in image contrast, effective resolution, and volume reconstruction quality. We validate our new approach through imaging live developing zebrafish, demonstrating the technology's ability to capture imaging data from large volumes synchronously with high contrast, while remaining compatible with standard microscope sample mounting.
Cite
@article{arxiv.2010.00644,
title = {Single-objective selective-volume illumination microscopy enables high-contrast light-field imaging},
author = {Sara Madaan and Kevin Keomanee-Dizon and Matt Jones and Chenyang Zhong and Anna Nadtochiy and Peter Luu and Scott E. Fraser and Thai V. Truong},
journal= {arXiv preprint arXiv:2010.00644},
year = {2021}
}
Comments
Sara Madaan and Kevin Keomanee-Dizon contributed equally to this work; 4 pages, 3 figures; supplementary material included