Hierarchical sensory processing in zebrafish thalamocortical-like circuits.

Trinh, Anh-Tuan; Ostenrath, Anna Maria; Del Castillo-Berges, Ignacio; Cachin, Fanchon; Koç, Mina; Kraus, Susanne; Serneels, Bram; Kawakami, Koichi et al. · Science · 2026

basic_science · Level V

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Abstract

Thalamocortical projections shape the functional regionalization and parallel sensory computations across the mammalian cortex. However, the principles of thalamocortical computations in non-mammalian vertebrates remain underexplored. Here we investigated how the zebrafish pallium, a homolog of the vertebrate cortex, receives and processes sensory information, and how its architecture compares to thalamocortical circuits in other vertebrates. We revealed that the preglomerular complex (PG), a thalamocortical-like pathway, is the primary source of visual and vibrational information to the zebrafish pallium. PG and its pallial projections exhibit sensory-specific and topographically organized responses. In contrast, pallial neurons display topographically organized hierarchies, ranging from sensory-specific to multimodal and coincidence-detecting nonlinear responses. Our results suggest that hierarchies of sensory transformations across topographically organized thalamocortical-like circuits reflect a convergent principle across vertebrates.