Published February 27, 2023 | Version v1
Software Open

Asymmetric retinal direction tuning predicts optokinetic eye movements across stimulus conditions

  • 1. University of California, San Francisco

Description

Across species, the optokinetic reflex (OKR) stabilizes vision during self-motion. OKR occurs when ON direction-selective retinal ganglion cells (oDSGCs) detect slow, global image motion on the retina. How oDSGC activity is integrated centrally to generate behavior remains unknown. Here, we discover mechanisms that contribute to motion encoding in vertically-tuned oDSGCs and leverage these findings to empirically define signal transformation between retinal output and vertical OKR behavior. We demonstrate that motion encoding in vertically-tuned oDSGCs is contrast-sensitive and asymmetric for oDSGC types that prefer opposite directions. These phenomena arise from the interplay between spike threshold nonlinearities and differences in synaptic input weights, including shifts in the balance of excitation and inhibition. In behaving mice, these neurophysiological observations, along with a central subtraction of oDSGC outputs, accurately predict the trajectories of vertical OKR across stimulus conditions. Thus, asymmetric tuning across competing sensory channels can critically shape behavior. Available here are the data associated with these findings.

Notes

All data are .mat files and all code are .m files. Both can be accessed using MATLAB, GNU Octave, or various other open-source tools that can read structure data from .mat files. The Format files are .html and can be opened with any web browser. See the README.html file for more information on working with the datasets.

Funding provided by: National Eye Institute
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000053
Award Number: F31EY033225

Funding provided by: McKnight Foundation
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100005270
Award Number:

Funding provided by: Research to Prevent Blindness
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100001818
Award Number:

Funding provided by: National Eye Institute
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000053
Award Number: R01EY029772

Funding provided by: National Eye Institute
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000053
Award Number: R01EY030136

Funding provided by: National Eye Institute
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000053
Award Number: P30EY002162

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