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Engineered vessels boost retinal organoid function, enabling advanced disease modeling
Until now, it has been difficult to maintain retinal ganglion cells deep inside organoids over extended periods. The supply ...
Researchers from Bonn and Basel have developed a new method to equip human retinal organoids – small, lab-grown models of the ...
This story is part of a series on the current progression in Regenerative Medicine. This piece is part of a series dedicated to the eye and improvements in restoring vision. In 1999, I defined ...
Due to the well-documented limitations of in vivo and existing in vitro retinal models, there is a pressing need for a reproducible 3D in vitro model of the human retina that can accurately predict in ...
Distinct retinal vessel atrophy patterns may be associated with multiple sclerosis (MS), but further research is needed to assess retinal vessel changes and their underlying role in MS. Changes in the ...
Using adaptive optics, scientists have identified elusive retinal ganglion cells in the eye's fovea that could explain how humans see red, green, blue, and yellow. Scientists have long wondered how ...
Faster thinning of cpRNFL and mGCIPL is associated with visual field progression in glaucoma, with rates of –1.02 and –1.04 ...
Here is an example of retinal ganglion cells with dendrites in the retina of a healthy eye. Disclaimer: AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert!
Using microelectrodes, scientists could show that cells in the retina play different roles. The produce different signals, which is important for the processing of visual information. These ...
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