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Phenomenological spiking model of the cat early visual system.
Carandini, M. et al. Do we know what the early visual system does?
Modeling convergent ON and OFF pathways in the early visual system.
Here we present a user-friendly silicon model of the early visual system that contributes to animal welfare.
We were interested in how the early visual system encodes and processes information that is available only for a short period.
This code shows how Hebbian learning mediated by STDP mechanisms could explain the emergence of disparity selectivity in the early visual system.
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It is widely accepted that the early mammalian visual system employs a series of neural circuits to extract elementary visual features, such as edges and motion [1, 2].
In addition to ion channels, synaptic transmission [58] and amacrine feedback [59] may contribute band pass filtering in the early rod visual system.
In our analyses, we examine developmental gene families falling into three classes: 1) Gene families used early in visual system specification: Decapentaplegic (Dpp), Engrailed (En), Hedgehog (Hh), Kruppel (Kr), Wingless/Wnt1 (Wnt1), and Zerknullt (Zen).
Conversely, the retention of all five vertebrate opsin families in N. forsteri suggests that the dipnoan lineage has lived in a brightly-lit colorful environment throughout its evolutionary history, making it a more appropriate model organism for the early tetrapod visual system than the coelacanth.
In its early stages, the visual system suffers from a lot of ambiguity and noise that severely limits the performance of early vision algorithms.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com