Nitric Oxide Refines Retinal Circuit Architecture Independently of Retinal Wave Dynamics
ID: 001844
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Contact BORGES, FERNANDO
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Created May 14, 2026
Last update May 14, 2026
Licenses: spdx:CC-BY-4.0
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We combine ultrasensitive electron paramagnetic resonance (EPR) spectroscopy, 4,096-channel high-density multielectrode array (HD-MEA) recordings, and advanced graph-theoretical analysis to study how NO contributes to retinal network formation during a critical period of synaptogenesis.
Retinal waves recording
P9-11 Long-Evans rats were submitted to rapid eye enucleation after decapitation....
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