Visible spectrum extended-focus optical coherence microscopy for label-free sub-cellular tomography
Biological Physics
2017-06-05 v1 Optics
Abstract
We present a novel extended-focus optical coherence microscope (OCM) attaining 0.7 {\mu}m axial and 0.4 {\mu}m lateral resolution maintained over a depth of 40 {\mu}m, while preserving the advantages of Fourier domain OCM. Our method uses an ultra-broad spectrum from a super- continuum laser source. As the spectrum spans from near-infrared to visible wavelengths (240 nm in bandwidth), we call the method visOCM. The combination of such a broad spectrum with a high-NA objective creates an almost isotropic 3D submicron resolution. We analyze the imaging performance of visOCM on microbead samples and demonstrate its image quality on cell cultures and ex-vivo mouse brain tissue.
Keywords
Cite
@article{arxiv.1706.00490,
title = {Visible spectrum extended-focus optical coherence microscopy for label-free sub-cellular tomography},
author = {Paul J. Marchand and Arno Bouwens and Daniel Szlag and David Nguyen and Adrien Descloux and Miguel Sison and Séverine Coquoz and Jérôme Extermann and Theo Lasser},
journal= {arXiv preprint arXiv:1706.00490},
year = {2017}
}
Comments
15 pages, 7 figures