Affiliation:
1. Politecnico di Milano
2. CNR-Institute for Genetic and Biomedical Research (CNR-IRGB)
3. IRCCS Humanitas Research Hospital
4. CNR-Institute for Photonics and Nanotechnologies (IFN-CNR)
Abstract
We introduce a broadband coherent anti-Stokes Raman scattering (CARS) microscope based on a 2-MHz repetition rate ytterbium laser generating 1035-nm high-energy (≈µJ level) femtosecond pulses. These features of the driving laser allow producing broadband red-shifted Stokes pulses, covering the whole fingerprint region (400–1800 cm−1), employing supercontinuum generation in a bulk crystal. Our system reaches state-of-the-art acquisition speed (<1 ms/pixel) and unprecedented sensitivity of ≈14.1 mmol/L when detecting dimethyl sulfoxide in water. To further improve the performance of the system and to enhance the signal-to-noise ratio of the CARS spectra, we designed a convolutional neural network for spectral denoising, coupled with a post-processing pipeline to distinguish different chemical species of biological tissues.
Subject
Atomic and Molecular Physics, and Optics
Cited by
20 articles.
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