Fei Xia
Affiliations: | 2015-2021 | BME/AEP | Cornell University, Ithaca, NY, United States |
2021- | Physics | Laboratoire Kastler Brossel |
Area:
Optics, BiophysicsGoogle:
"Fei Xia"Mean distance: (not calculated yet)
Parents
Sign in to add mentorChris Xu | grad student | 2015-2021 | Cornell |
Sylvain Gigan | post-doc | 2021- | Laboratoire Kastler Brossel, École Normale Supérieure, Université Pierre et Marie Curie, CNRS (Neurotree) |
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Publications
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Wang H, Hu J, Morandi A, et al. (2024) Large-scale photonic computing with nonlinear disordered media. Nature Computational Science. 4: 429-439 |
Xia F, Rimoli CV, Akemann W, et al. (2024) Neurophotonics beyond the surface: unmasking the brain's complexity exploiting optical scattering. Neurophotonics. 11: S11510 |
Xia F, Rimoli CV, Akemann W, et al. (2024) Neurophotonics beyond the Surface: Unmasking the Brain's Complexity Exploiting Optical Scattering. Arxiv |
Yang X, Liu S, Xia F, et al. (2023) Simultaneous multimodal optical coherence and three-photon microscopy of the mouse brain in the 1700 nm optical window . Biorxiv : the Preprint Server For Biology |
Pandya R, Valzania L, Dorchies F, et al. (2023) Three-dimensional operando optical imaging of particle and electrolyte heterogeneities inside Li-ion batteries. Nature Nanotechnology |
d'Arco A, Xia F, Boniface A, et al. (2022) Physics-based neural network for non-invasive control of coherent light in scattering media. Optics Express. 30: 30845-30856 |
Sinefeld D, Xia F, Wang M, et al. (2022) Three-Photon Adaptive Optics for Mouse Brain Imaging. Frontiers in Neuroscience. 16: 880859 |
Hontani Y, Akbari N, Kolkman KE, et al. (2022) Deep-tissue Three-photon Fluorescence Microscopy in Intact Mouse and Zebrafish Brain. Journal of Visualized Experiments : Jove |
Akbari N, Rebec MR, Xia F, et al. (2021) Imaging deeper than the transport mean free path with multiphoton microscopy. Biomedical Optics Express. 13: 452-463 |
Mok AT, Shea J, Wu C, et al. (2021) Spatially resolved measurements of ballistic and total transmission in microscale tissue samples from 450 nm to 1624 nm. Biomedical Optics Express. 13: 438-451 |