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Topic: Topographic maps

Seminar
2 seminars
Seminar · Vision Science

A novel form of retinotopy in area V2 highlights location-dependent feature selectivity in the visual system

Madineh Sedigh-Sarvestani · Max Planck Florida Institute for Neuroscience

Wed, Jan 19, 2022 · 16:30 UTC

Topographic maps are a prominent feature of brain organization, reflecting local and large-scale representation of the sensory surface. ​​Traditionally, such representations in early visual areas are conceived as retinotopic maps preserving ego-centric retinal spatial location while ensuring that other features of visual input are uniformly represented for every location in space. I will discuss our recent findings of a striking departure from this simple mapping in the secondary visual area (V2) of the tree shrew that is best described as a sinusoidal transformation of the visual field. This

Seminar · Computational Neuroscience

Representation transfer and signal denoising through topographic modularity

Barna Zajzon · Morrison lab, Forschungszentrum Jülich, Germany

Thu, Nov 4, 2021 · 16:30 UTC

To prevail in a dynamic and noisy environment, the brain must create reliable and meaningful representations from sensory inputs that are often ambiguous or corrupt. Since only information that permeates the cortical hierarchy can influence sensory perception and decision-making, it is critical that noisy external stimuli are encoded and propagated through different processing stages with minimal signal degradation. Here we hypothesize that stimulus-specific pathways akin to cortical topographic maps may provide the structural scaffold for such signal routing. We investigate whether the featur

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