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Fast, multiplane line-scan confocal microscopy using axially distributed slits.


ABSTRACT: The inherent constraints on resolution, speed and field of view have hindered the development of high-speed, three-dimensional microscopy techniques over large scales. Here, we present a multiplane line-scan imaging strategy, which uses a series of axially distributed reflecting slits to probe different depths within a sample volume. Our technique enables the simultaneous imaging of an optically sectioned image stack with a single camera at frame rates of hundreds of hertz, without the need for axial scanning. We demonstrate the applicability of our system to monitor fast dynamics in biological samples by performing calcium imaging of neuronal activity in mouse brains and voltage imaging of cardiomyocytes in cardiac samples.

SUBMITTER: Tsang JM 

PROVIDER: S-EPMC7984773 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Fast, multiplane line-scan confocal microscopy using axially distributed slits.

Tsang Jean-Marc JM   Gritton Howard J HJ   Das Shoshana L SL   Weber Timothy D TD   Chen Christopher S CS   Han Xue X   Mertz Jerome J  

Biomedical optics express 20210209 3


The inherent constraints on resolution, speed and field of view have hindered the development of high-speed, three-dimensional microscopy techniques over large scales. Here, we present a multiplane line-scan imaging strategy, which uses a series of axially distributed reflecting slits to probe different depths within a sample volume. Our technique enables the simultaneous imaging of an optically sectioned image stack with a single camera at frame rates of hundreds of hertz, without the need for  ...[more]

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