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Fast, high-contrast imaging of animal development with scanned light sheet-based structured-illumination microscopy.


ABSTRACT: Recording light-microscopy images of large, nontransparent specimens, such as developing multicellular organisms, is complicated by decreased contrast resulting from light scattering. Early zebrafish development can be captured by standard light-sheet microscopy, but new imaging strategies are required to obtain high-quality data of late development or of less transparent organisms. We combined digital scanned laser light-sheet fluorescence microscopy with incoherent structured-illumination microscopy (DSLM-SI) and created structured-illumination patterns with continuously adjustable frequencies. Our method discriminates the specimen-related scattered background from signal fluorescence, thereby removing out-of-focus light and optimizing the contrast of in-focus structures. DSLM-SI provides rapid control of the illumination pattern, exceptional imaging quality and high imaging speeds. We performed long-term imaging of zebrafish development for 58 h and fast multiple-view imaging of early Drosophila melanogaster development. We reconstructed cell positions over time from the Drosophila DSLM-SI data and created a fly digital embryo.

SUBMITTER: Keller PJ 

PROVIDER: S-EPMC4418465 | biostudies-literature | 2010 Aug

REPOSITORIES: biostudies-literature

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Fast, high-contrast imaging of animal development with scanned light sheet-based structured-illumination microscopy.

Keller Philipp J PJ   Schmidt Annette D AD   Santella Anthony A   Khairy Khaled K   Bao Zhirong Z   Wittbrodt Joachim J   Stelzer Ernst H K EH  

Nature methods 20100704 8


Recording light-microscopy images of large, nontransparent specimens, such as developing multicellular organisms, is complicated by decreased contrast resulting from light scattering. Early zebrafish development can be captured by standard light-sheet microscopy, but new imaging strategies are required to obtain high-quality data of late development or of less transparent organisms. We combined digital scanned laser light-sheet fluorescence microscopy with incoherent structured-illumination micr  ...[more]

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