Line excitation array detection fluorescence microscopy at 0.8 million frames per second

Demanding biological imaging applications require extremely fast detection methods. Here, the authors demonstrate Line Excitation Array Detection, their developed technique for performing fluorescence microscopy in 3D with 0.8 million frames per second, by applying it to flow cytometry and neuron de...

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Auteurs principaux: Chris Martin, Tianqi Li, Evan Hegarty, Peisen Zhao, Sudip Mondal, Adela Ben-Yakar
Format: article
Langue:EN
Publié: Nature Portfolio 2018
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Accès en ligne:https://doaj.org/article/e45f1d9e53434d1fae37d9fd6bcbb9ce
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Résumé:Demanding biological imaging applications require extremely fast detection methods. Here, the authors demonstrate Line Excitation Array Detection, their developed technique for performing fluorescence microscopy in 3D with 0.8 million frames per second, by applying it to flow cytometry and neuron detection.