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Deep tissue multiphoton microscopy using longer wavelength excitation

Optics Express · 2009 · Vol. 17(16) · pp. 13354–13354
Demirhan KobatMichael DurstNozomi NishimuraAngela W. WongChris B. SchafferChris Xu

Abstract

We compare the maximal two-photon fluorescence microscopy (TPM) imaging depth achieved with 775-nm excitation to that achieved with 1280-nm excitation through in vivo and ex vivo TPM of fluorescently-labeled blood vessels in mouse brain. We achieved high contrast imaging of blood vessels at approximately twice the depth with 1280-nm excitation as with 775-nm excitation. An imaging depth of 1 mm can be achieved in in vivo imaging of adult mouse brains at 1280 nm with approximately 1-nJ pulse energy at the sample surface. Blood flow speed measurements at a depth of 900 mum are performed.

Advanced Fluorescence Microscopy TechniquesPhotoacoustic and Ultrasonic ImagingOptical Imaging and Spectroscopy TechniquesExcitationMicroscopyMaterials scienceOpticsTwo-photon excitation microscopyFluorescenceFluorescence microscopePreclinical imagingFluorescence-lifetime imaging microscopyExcitation wavelength

MeSH terms

Computer SimulationEquipment DesignImage EnhancementLightLightingModels, TheoreticalScattering, RadiationSensitivity and SpecificityComputer-Aided DesignEquipment Failure AnalysisMicroscopy, Fluorescence, Multiphoton

Funding

  • National Science Foundation
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Deep tissue multiphoton microscopy using longer wavelength excitation · Scinovex