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Aberration-free three-dimensional multiphoton imaging of neuronal activity at kHz rates.


ABSTRACT: Multiphoton microscopy is a powerful tool in neuroscience, promising to deliver important data on the spatiotemporal activity within individual neurons as well as in networks of neurons. A major limitation of current technologies is the relatively slow scan rates along the z direction compared to the kHz rates obtainable in the x and y directions. Here, we describe a custom-built microscope system based on an architecture that allows kHz scan rates over hundreds of microns in all three dimensions without introducing aberration. We further demonstrate how this high-speed 3D multiphoton imaging system can be used to study neuronal activity at millisecond resolution at the subcellular as well as the population level.

SUBMITTER: Botcherby EJ 

PROVIDER: S-EPMC3286923 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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Aberration-free three-dimensional multiphoton imaging of neuronal activity at kHz rates.

Botcherby Edward J EJ   Smith Christopher W CW   Kohl Michael M MM   Débarre Delphine D   Booth Martin J MJ   Juškaitis Rimas R   Paulsen Ole O   Wilson Tony T  

Proceedings of the National Academy of Sciences of the United States of America 20120206 8


Multiphoton microscopy is a powerful tool in neuroscience, promising to deliver important data on the spatiotemporal activity within individual neurons as well as in networks of neurons. A major limitation of current technologies is the relatively slow scan rates along the z direction compared to the kHz rates obtainable in the x and y directions. Here, we describe a custom-built microscope system based on an architecture that allows kHz scan rates over hundreds of microns in all three dimension  ...[more]

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