We present a novel hyperspectral imaging setup enabling high-resolution, fast reconstruction of large spectral datasets of brain tissue reflectance and fluorescence, with flexibility in the wavelengths selection, for in vivo and ex vivo preclinical applications.

A novel hyperspectral imaging tool for preclinical and translational investigations of brain tissue physiology and pathology / Giannoni L.; Toaha A.; Marradi M.; Bonaudo C.; Puppa A.D.; Pavone F.S.. - ELETTRONICO. - (2024), pp. 0-0. (Intervento presentato al convegno Optical Tomography and Spectroscopy, OT and S 2024 - Part of Optica Biophotonics Congress: Biomedical Optics tenutosi a usa nel 2024) [10.1364/translational.2024.jd6a.4].

A novel hyperspectral imaging tool for preclinical and translational investigations of brain tissue physiology and pathology

Giannoni L.;Toaha A.;Marradi M.;Bonaudo C.;Pavone F. S.
2024

Abstract

We present a novel hyperspectral imaging setup enabling high-resolution, fast reconstruction of large spectral datasets of brain tissue reflectance and fluorescence, with flexibility in the wavelengths selection, for in vivo and ex vivo preclinical applications.
2024
Optical Tomography and Spectroscopy, OT and S 2024 in Proceedings Optica Biophotonics Congress: Biomedical Optics 2024, Translational, Microscopy, OCT, OTS, BRAIN - Part of Optica Biophotonics Congress: Biomedical Optics
Optical Tomography and Spectroscopy, OT and S 2024 - Part of Optica Biophotonics Congress: Biomedical Optics
usa
2024
Giannoni L.; Toaha A.; Marradi M.; Bonaudo C.; Puppa A.D.; Pavone F.S.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1424955
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