AI Article Synopsis

  • Investigated light-driven responses in mouse retinal ganglion cells (RGCs) using a high-density multielectrode array to record activity across the retina.
  • Found that dorsal RGCs were more responsive to light at eye-opening, suggesting a priority on environmental cues for young mice.
  • Observed that as RGCs matured, their receptive fields became smaller and more circular, with stronger responses to stimuli, showing that development varies between dorsal and ventral regions of the retina.

Article Abstract

We have investigated the ontogeny of light-driven responses in mouse retinal ganglion cells (RGCs). Using a large-scale, high-density multielectrode array, we recorded from hundreds to thousands of RGCs simultaneously at pan-retinal level, including dorsal and ventral locations. Responses to different contrasts not only revealed a complex developmental profile for ON, OFF and ON-OFF responses, but also unveiled differences between dorsal and ventral RGC responses. At eye-opening, dorsal RGCs of all types were more responsive to light, perhaps indicating an environmental priority to nest viewing for pre-weaning pups. The developmental profile of ON and OFF responses exhibited antagonistic behaviour, with the strongest ON responses shortly after eye-opening, followed by an increase in the strength of OFF responses later on. Further, we found that with maturation receptive field (RF) center sizes decrease, spike-triggered averaged responses to white noise become stronger, and centers become more circular while maintaining differences between RGC types. We conclude that the maturation of retinal functionality is not spatially homogeneous, likely reflecting ecological requirements that favour earlier maturation of the dorsal retina.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5301206PMC
http://dx.doi.org/10.1038/srep42330DOI Listing

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