#retinalwaves
Lack of spontaneous activity (#retinalwaves) in early development prevents the formation of retinal circuits critical for stabilizing images as we move through the world. doi.org/10.1016/j.ce....
June 30, 2025 at 4:21 PM
Some papers stand out from the rest. After Evelyne's passing, we all felt a strong desire to complete this project in her honour. It's more than just a paper; it's a tribute to her memory and her passion for retinal wave
#retina #microglia #retinalwaves #development

www.biorxiv.org/content/10.6...
www.biorxiv.org
March 24, 2026 at 6:16 AM
#NeuralNetworks pre-trained with #RetinalWaves, spontaneous activity patterns in the early #VisualSystem, predict motion faster and more accurately. Julijana Gjorgjieva and her team showed this phenomenon in simulations and real-world scenes: go.tum.de/361879

@erc.europa.eu

📷A.Eckert
How artificial intelligence can learn from mice
A team from TUM trained artificial neural networks using biological data from the development of the visual sense. The networks became faster and more accurate.
go.tum.de
June 12, 2025 at 3:16 PM
Retinal waves reveal axial biases in modular patterns of cortical activity that predict future orientation preferences
Fitzpatrick, D., Gribizis, A.
Paper
Details
#RetinalWaves #CorticalActivity #NeuralDevelopment
July 13, 2025 at 9:01 AM