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Additive convergence for visuomotor decisions
DOI:10.1016/j.tins.2026.04.011.png)
Abstract
En 中文
In a recent study, Slangewal et al. explored principles of visuomotor decision-making in larval zebrafish. Visuomotor choices were revealed to be largely additive, integrating visual motion, luminance level, and luminance change during cue conflict. Brain-wide imaging mapped parallel feature circuits within the optic tectum that converge in the anterior hindbrain. Single-cell identity and morphology analyses refined this map, linking behavioral algorithms to candidate circuit implementations.
Keywords:
visuomotor decision-making
larval zebrafish
optic tectum
anterior hindbrain
behavioral algorithms
Journal
IF:
15.1
Papers:
5.3K
Citations:
2.2W
