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Direct wavefront sensing enables functional imaging of infragranular axons and spines.


ABSTRACT: We advance two-photon microscopy for near-diffraction-limited imaging up to 850?µm below the pia in awake mice. Our approach combines direct wavefront sensing of light from a guidestar (formed by descanned fluorescence from Cy5.5-conjugated dextran in brain microvessels) with adaptive optics to compensate for tissue-induced aberrations in the wavefront. We achieve high signal-to-noise ratios in recordings of glutamate release from thalamocortical axons and calcium transients in spines of layer 5b basal dendrites during active tactile sensing.

SUBMITTER: Liu R 

PROVIDER: S-EPMC6763395 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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Direct wavefront sensing enables functional imaging of infragranular axons and spines.

Liu Rui R   Li Zengyi Z   Marvin Jonathan S JS   Kleinfeld David D  

Nature methods 20190617 7


We advance two-photon microscopy for near-diffraction-limited imaging up to 850 µm below the pia in awake mice. Our approach combines direct wavefront sensing of light from a guidestar (formed by descanned fluorescence from Cy5.5-conjugated dextran in brain microvessels) with adaptive optics to compensate for tissue-induced aberrations in the wavefront. We achieve high signal-to-noise ratios in recordings of glutamate release from thalamocortical axons and calcium transients in spines of layer 5  ...[more]

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