Fast Wide-field Light Sheet Electro-optic FLIM

Fuente: arXiv
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Bibliographic Details
Main Authors: Knight, V. Rose, Bode, Nils, Dowlatshahi, Dara P., Kim, Jung-Gun, Mudgett, Mary Beth, Wakatsuki, Soichi, Bowman, Adam J., Kasevich, Mark A.
Format: Preprint
Published: 2025
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author Knight, V. Rose
Bode, Nils
Dowlatshahi, Dara P.
Kim, Jung-Gun
Mudgett, Mary Beth
Wakatsuki, Soichi
Bowman, Adam J.
Kasevich, Mark A.
author_facet Knight, V. Rose
Bode, Nils
Dowlatshahi, Dara P.
Kim, Jung-Gun
Mudgett, Mary Beth
Wakatsuki, Soichi
Bowman, Adam J.
Kasevich, Mark A.
contents We demonstrate volumetric fluorescence lifetime microscopy (FLIM) using the electro-optic FLIM technique. Images acquired in a selective plane illumination microscope are gated using a Pockels cell driven at 80 MHz, enabling light sheet FLIM acquisition with up to 800 μm field of view. Volume acquisitions are demonstrated on fluorescent bead mixtures and in live Arabidopsis thaliana root samples using both genetically encoded fluorescent proteins and endogenous autofluorescence.
format Preprint
id arxiv_https___arxiv_org_abs_2501_15012
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Fast Wide-field Light Sheet Electro-optic FLIM
Knight, V. Rose
Bode, Nils
Dowlatshahi, Dara P.
Kim, Jung-Gun
Mudgett, Mary Beth
Wakatsuki, Soichi
Bowman, Adam J.
Kasevich, Mark A.
Optics
Applied Physics
We demonstrate volumetric fluorescence lifetime microscopy (FLIM) using the electro-optic FLIM technique. Images acquired in a selective plane illumination microscope are gated using a Pockels cell driven at 80 MHz, enabling light sheet FLIM acquisition with up to 800 μm field of view. Volume acquisitions are demonstrated on fluorescent bead mixtures and in live Arabidopsis thaliana root samples using both genetically encoded fluorescent proteins and endogenous autofluorescence.
title Fast Wide-field Light Sheet Electro-optic FLIM
topic Optics
Applied Physics
url https://arxiv.org/abs/2501.15012