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  4. Characterization Of Retinal Functionality At Different Eccentricities In A Diurnal Rodent
 
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Characterization Of Retinal Functionality At Different Eccentricities In A Diurnal Rodent

Journal
Frontiers in Cellular Neuroscience
Date Issued
2018-12-03
Author(s)
María-José Escobar
César Reyes
Rubén Herzog
Joaquin Araya
Mónica Otero
Cristóbal Ibaceta
Palacios, Adrián  
Facultad de Ciencias  
DOI
10.3389/fncel.2018.00444
WoS ID
WOS:000452124600001
Abstract
Although the properties of the neurons of the visual system that process central and peripheral regions of the visual field have been widely researched in the visual cortex and the LGN, they have scarcely been documented for the retina. The retina is the first step in integrating optical signals, and despite considerable efforts to functionally characterize the different types of retinal ganglion cells (RGCs), a clear account of the particular functionality of cells with central vs. peripheral fields is still wanting. Here, we use electrophysiological recordings, gathered from retinas of the diurnal rodent <i>Octodon degus</i>, to show that RGCs with peripheral receptive fields (RF) are larger, faster, and have shorter transient responses. This translates into higher sensitivity at high temporal frequencies and a full frequency bandwidth when compared to RGCs with more central RF. We also observed that imbalances between ON and OFF cell populations are preserved with eccentricity. Finally, the high diversity of functional types of RGCs highlights the complexity of the computational strategies implemented in the early stages of visual processing, which could inspire the development of bio-inspired artificial systems.
Subjects

Cellular And Molecula...

Neurosciences

OCDE Subjects

Medical And Health Sc...

Quartile (Date Issued)
Q1
License
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