Researchers from Bonn and Basel have developed a new method to equip human retinal organoids – small, lab-grown models of the ...
Prior investigations of rabbit and mouse retina have reported robust directionally selective retinal circuits impinging on directionally-selective ganglion cells (DSGC), while investigations of NHP ...
My career has been devoted to understanding neural computation, both for its own sake and for the sake of making neural prosthesis that restore and augment human function. My specific research has ...
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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 ...
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 ...
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 ...
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