Functional Organization of Midget and Parasol Ganglion Cells in the Human Retina
Kling, A.; Gogliettino, A. R.; Shah, N. P.; Wu, E. G.; Brackbill, N.; Sher, A.; Litke, A.; Silva, R. A.; Chichilnisky, E. J.
Show abstract
The functional organization of diverse retinal ganglion cell (RGC) types, which shapes the visual signal transmitted to the brain, has been examined in many species. The unique spatial, temporal, and chromatic properties of the numerically dominant RGC types in macaque monkey retina are presumed to most accurately model human vision. However, the functional similarity between RGCs in macaques and humans has only begun to be tested, and recent work suggests possible differences. Here, the properties of the numerically dominant human RGC types were examined using large-scale multi-electrode recordings with fine-grained visual stimulation in isolated retina, and compared to results from dozens of recordings from macaque retina using the same experimental methods and conditions. The properties of four major human RGC types -- ON-parasol, OFF-parasol, ON-midget, and OFF-midget -- closely paralleled those of the same macaque RGC types, including the spatial and temporal light sensitivity, precisely coordinated mosaic organization of receptive fields, ON-OFF asymmetries, spatial response nonlinearity, and sampling of photoreceptor inputs over space. Putative smooth monostratified cells and polyaxonal amacrine cells were also identified based on similarities to cell types previously identified in macaque retina. The results suggest that recently proposed differences between human and macaque RGCs probably reflect experimental differences, and that the macaque model provides an accurate picture of human RGC function.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Normalization in mouse primary visual cortex 94%
- A new method of recording from the giant fiber of Drosophila melanogaster shows that the strength of its auditory inputs remains constant with age 92%
- Spectral dependency of the human pupillary light reflex. Influences of pre-adaptation and chronotype. 91%
Similar papers in this journal
- Asymmetric Activation of Retinal ON and OFF Pathways by AOSLO Raster-Scanned Visual Stimuli 92%
- Coarse-scale Optoretinography(CoORG) with extended field-of-view for normative characterization. 92%
- Longitudinal investigation of prostate tumor spheroid proliferation with dynamic line-field optical coherence tomography 90%
Similar papers in this journal
Similar papers in this journal
- Spatially Patterned Bi-electrode Epiretinal Stimulation for Axon Avoidance at Cellular Resolution 95%
- Understanding responses to multi-electrode epiretinal stimulation using a biophysical model 95%
- Naturalistic spatiotemporal stimulus modulation during epiretinal stimulation increases the persistence of retinal ganglion cell responsivity 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.