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Fiber-bundle illumination: realizing high-degree time-multiplexed multifocal multiphoton microscopy with simplicity.


ABSTRACT: High-degree time-multiplexed multifocal multiphoton microscopy was expected to provide a facile path to scanningless optical-sectioning and the fast imaging of dynamic three-dimensional biological systems. However, physical constraints on typical time multiplexing devices, arising from diffraction in the free-space propagation of light waves, lead to significant manufacturing difficulties and have prevented the experimental realization of high-degree time multiplexing. To resolve this issue, we have developed a novel method using optical fiber bundles of various lengths to confine the diffraction of propagating light waves and to create a time multiplexing effect. Through this method, we experimentally demonstrate the highest degree of time multiplexing ever achieved in multifocal multiphoton microscopy (~50 times larger than conventional approaches), and hence the potential of using simply-manufactured devices for scanningless optical sectioning of biological systems.

SUBMITTER: Yu JY 

PROVIDER: S-EPMC6173774 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Fiber-bundle illumination: realizing high-degree time-multiplexed multifocal multiphoton microscopy with simplicity.

Yu Jiun-Yann JY   Kim Sunduck S   Shim Young Bo YB   Holland Daniel B DB   Allodi Marco A MA   Yeh Chao-Yuan CY   Blake Geoffrey A GA   Han Young-Geun YG   Guo Chin-Lin CL  

Scientific reports 20181005 1


High-degree time-multiplexed multifocal multiphoton microscopy was expected to provide a facile path to scanningless optical-sectioning and the fast imaging of dynamic three-dimensional biological systems. However, physical constraints on typical time multiplexing devices, arising from diffraction in the free-space propagation of light waves, lead to significant manufacturing difficulties and have prevented the experimental realization of high-degree time multiplexing. To resolve this issue, we  ...[more]

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