File:Effect of Rockout and HU+Aphi treatment on the retinal neuroepithelium (RNE).jpg

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Figure 2— supplement. Effect of Rockout and HU+Aphi treatment on the RNE.

(A) Confocal scan of 30 ss RNE in control (left) and Rockout treated (right) embryo stained for phosphomyosin.Rockout treatment was performed for 7 h starting from 13–14 ss. Lookup table indicates the minimum and maximum intensity values. (B) Confocal scans of 30 ss RNE in control (left) and HU+ Aphi treated (right) embryos stained for DAPI (cyan), mitotic marker phosphohistone-3 (yellow) and phalloidin (magenta). (C) Confocal scans of 30 ss RNE in control (left) and HU+ Aphi-treated (middle and right) embryos stained with phalloidin. Areas marked by yellow box are shown in D. (D) Confocal scans of RNE cells (zoomed images of regions marked in C). Control (top), HU+Aphi treated (middle and bottom) stained with phalloidin. All scale bars = 10 µm.
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https://elifesciences.org/articles/22689 Jaydeep Sidhaye Caren Norden (2017) Concerted action of neuroepithelial basal shrinkage and active epithelial migration ensures efficient optic cup morphogenesis

eLife 6:e22689. https://doi.org/10.7554/eLife.22689
Author Jaydeep Sidhaye Caren Norden
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© 2017, Sidhaye et al. This article is distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use and redistribution provided that the original author and source are credited.

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current20:44, 19 September 2024Thumbnail for version as of 20:44, 19 September 20241,500 × 940 (364 KB)Rasbak (talk | contribs){{Information |description=Figure 3—Effect of Rockout and HU+Aphi treatment on the RNE.<br> (A) Confocal scan of 30 ss RNE in control (left) and Rockout treated (right) embryo stained for phosphomyosin.Rockout treatment was performed for 7 h starting from 13–14 ss. Lookup table indicates the minimum and maximum intensity values. (B) Confocal scans of 30 ss RNE in control (left) and HU+ Aphi treated (right) embryos stained for DAPI (cyan), mitotic marker phosphohistone-3 (yellow) and phalloidi...

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