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Qito model the microphysiological environment of the retina to study retinal diseases and fight blindness. The postdoc will have the opportunity to collaborate with ophthalmology researchers at hospitals
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 3 months ago
model the microphysiological environment of the retina to study retinal diseases and fight blindness. The postdoc will have the opportunity to collaborate with ophthalmology researchers at hospitals
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experimental approaches including electrophysiology, data analysis, and computational approaches. Possible methods include ex vivo electrophysiology of human, primate, pig, and mouse retina, in vivo recordings
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pharmacological activation of Wnt and Norrin signaling to restore pericytes in the brain and retina. For more information, visit our lab webpage at https://med.umn.edu/ophthalmology/research/junge-lab
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. Microsoft office software skills. Preferred qualifications: Obtained a PhD within the last two years. Experience with mice and cell culture, ophthalmology/retina research, lipid analysis techniques, and wet
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interested in studying the role of mechanotransduction in the retina and related technologies, including ultrasound neuromodulation and sonogenetics. Questions we are interested in studying include: 1) What
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strategy to generate RPE and photoreceptor cells and micro for efficient engraftment in the retina. Your mission As a postdoctoral researcher you will work in our team to establish a method for
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
advanced magnetic resonance imaging techniques at 3T and 7T for imaging the visual system, including the retina, optic nerve, or brain. MRI techniques to assess blood flow, function, diffusion, and CSF flow