come and join our team in Spain! we are looking for a researcher with a quantitative background to study the neurocompulational logic underlying visual attention-distractor networks
#SciencePhoto_IN
"The chosen one"
Author: Sofía Morou @morou_sofia
Lab: Dr. Andreas Kardamakis @KardamakisAndre
"Inhibitory neurons of the midbrain (pink), express opsins excited with light. After measuring a cell's electrical activity (cyan), we can visualize with @LeicaMicro."
Here is our new preprint showing how local circuits in the superior colliculus can generate visual center and surround interactions. We also show a way to crack local circuits for their contribution to global function. https://t.co/KwNZG8cjSf @arvin_neuro@iaklaz @meletislab
#SciencePhoto_IN
"Signal"
Author: Kuisong Song
Lab: Dr. Andreas Kardamakis @KardamakisAndre
"The fine structure of a retinal ganglion cell visualized by Rabies-GFP. Electric signals are collected by dendrites and conveyed through the axon to the brain. @zeiss_micro Elyra PS.1"
#SciencePhoto_IN
"Abyss"
Author: Kuisong Song
Lab: Dr. Andreas Kardamakis @KardamakisAndre "Axons (orange) from mouse retinal ganglion cells converge to form the optic nerve. The evenly distributed axons suggests a good pan-retina viral infection. @zeiss_micro LSM880-Elyra PS.1."
#SciencePhoto_IN
"Watermelon"
Author: Kuisong Song
Lab: Dr. Andreas Kardamakis @KardamakisAndre "Green (GFP) fibers from retina, red (RFP) axons sent by the prefrontal cortex, target sensory and motor layers of the superior colliculus, respectively. @LeicaMicro Thunder."
#SciencePhoto_IN
"Dendritic Spines: The Keys to our Memory"
Author: Álvaro Morcuende @MorcamAlvaro
Lab: Dr. Teresa Femenía
"Hippocampal cells in vitro. Neuron (left), astrocyte (right). A fluorescent protein allows us to examine them in fine detail. @zeiss_micro@svi_huygens"