Quantifying three-dimensional rodent retina vascular development using optical tissue clearing and light-sheet microscopy.
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ABSTRACT: Retinal vasculature develops in a highly orchestrated three-dimensional (3-D) sequence. The stages of retinal vascularization are highly susceptible to oxygen perturbations. We demonstrate that optical tissue clearing of intact rat retinas and light-sheet microscopy provides rapid 3-D characterization of vascular complexity during retinal development. Compared with flat mount preparations that dissect the retina and primarily image the outermost vascular layers, intact cleared retinas imaged using light-sheet fluorescence microscopy display changes in the 3-D retinal vasculature rapidly without the need for point scanning techniques. Using a severe model of retinal vascular disruption, we demonstrate that a simple metric based on Sholl analysis captures the vascular changes observed during
SUBMITTER: Singh JN
PROVIDER: S-EPMC5514054 | biostudies-literature | 2017 Jul
REPOSITORIES: biostudies-literature
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