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Non-linear optical flow cytometry using a scanned, Bessel beam light-sheet.


ABSTRACT: Modern flow cytometry instruments have become vital tools for high-throughput analysis of single cells. However, as issues with the cellular labeling techniques often used in flow cytometry have become more of a concern, the development of label-free modalities for cellular analysis is increasingly desired. Non-linear optical phenomena (NLO) are of growing interest for label-free analysis because of the ability to measure the intrinsic optical response of biomolecules found in cells. We demonstrate that a light-sheet consisting of a scanned Bessel beam is an optimal excitation geometry for efficiently generating NLO signals in a microfluidic environment. The balance of photon density and cross-sectional area provided by the light-sheet allowed significantly larger two-photon fluorescence intensities to be measured in a model polystyrene microparticle system compared to measurements made using other excitation focal geometries, including a relaxed Gaussian excitation beam often used in conventional flow cytometers.

SUBMITTER: Collier BB 

PROVIDER: S-EPMC4448227 | biostudies-literature | 2015 May

REPOSITORIES: biostudies-literature

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Non-linear optical flow cytometry using a scanned, Bessel beam light-sheet.

Collier Bradley B BB   Awasthi Samir S   Lieu Deborah K DK   Chan James W JW  

Scientific reports 20150529


Modern flow cytometry instruments have become vital tools for high-throughput analysis of single cells. However, as issues with the cellular labeling techniques often used in flow cytometry have become more of a concern, the development of label-free modalities for cellular analysis is increasingly desired. Non-linear optical phenomena (NLO) are of growing interest for label-free analysis because of the ability to measure the intrinsic optical response of biomolecules found in cells. We demonstr  ...[more]

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