Detecting the direction of motion contained in the visual scene is crucial for many behaviors. However, because single photoreceptors only signal local luminance changes, motion detection requires a comparison of signals from neighboring photoreceptors across time in downstream neuronal circuits. For signals to coincide on readout neurons that thus become motion and direction selective, different input lines need to be delayed with respect to each other. Classical models of motion detection rely on non-linear interactions between two inputs after different temporal filtering. However, recent studies have suggested the requirement for at least three, not only two, input signals. Here, we comprehensively characterize the spatiotemporal respon...
Visual motion is an essential cue for many sighted animals. This can either be caused by the movemen...
Visual motion detection is of major importance for flies as they use the optic flow generated by the...
SummaryLike the mammalian visual cortex, the fly visual system is organized into retinotopic columns...
Detecting the direction of motion contained in the visual scene is crucial for many behaviors. Howev...
Detecting the direction of visual movement is fundamental for every sighted animal in order to navig...
Detecting the direction of visual movement is fundamental for every sighted animal in order to navig...
Estimating motion is a fundamental task for the visual system of sighted animals. In Drosophila, dir...
SummaryDetecting the orientation and movement of edges in a scene is critical to visually guided beh...
The extraction of directional motion information from changing retinal images is one of the earliest...
Recent experiments have shown that motion detection in Drosophila starts with splitting the visual i...
Recent experiments have shown that motion detection in Drosophila starts with splitting the visual i...
SummaryRecent experiments have shown that motion detection in Drosophila starts with splitting the v...
Detecting the direction of image motion is important for visual navigation as well as predator, prey...
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SummaryIn the visual system, peripheral processing circuits are often tuned to specific stimulus fea...
Visual motion is an essential cue for many sighted animals. This can either be caused by the movemen...
Visual motion detection is of major importance for flies as they use the optic flow generated by the...
SummaryLike the mammalian visual cortex, the fly visual system is organized into retinotopic columns...
Detecting the direction of motion contained in the visual scene is crucial for many behaviors. Howev...
Detecting the direction of visual movement is fundamental for every sighted animal in order to navig...
Detecting the direction of visual movement is fundamental for every sighted animal in order to navig...
Estimating motion is a fundamental task for the visual system of sighted animals. In Drosophila, dir...
SummaryDetecting the orientation and movement of edges in a scene is critical to visually guided beh...
The extraction of directional motion information from changing retinal images is one of the earliest...
Recent experiments have shown that motion detection in Drosophila starts with splitting the visual i...
Recent experiments have shown that motion detection in Drosophila starts with splitting the visual i...
SummaryRecent experiments have shown that motion detection in Drosophila starts with splitting the v...
Detecting the direction of image motion is important for visual navigation as well as predator, prey...
p.p1 {margin: 0.0px 0.0px 0.0px 0.0px; font: 12.0px Times} p.p2 {margin: 0.0px 0.0px 0.0px 0.0px; fo...
SummaryIn the visual system, peripheral processing circuits are often tuned to specific stimulus fea...
Visual motion is an essential cue for many sighted animals. This can either be caused by the movemen...
Visual motion detection is of major importance for flies as they use the optic flow generated by the...
SummaryLike the mammalian visual cortex, the fly visual system is organized into retinotopic columns...