Disentangling Cephalopod Chromatophores Motor Units with Computer Vision

DOI

Using high-resolution imaging and computational analysis, this study shows that cephalopod chromatophores are controlled by multiple motor neurons forming overlapping, spatially organized units across and within chromatophores. Rather than acting as single uniform pixels, chromatophores consist of smaller controllable domains, enabling highly flexible and coordinated camouflage patterns.

Identifier
DOI https://doi.org/10.17617/3.0LECUZ
Metadata Access https://edmond.mpg.de/api/datasets/export?exporter=dataverse_json&persistentId=doi:10.17617/3.0LECUZ
Provenance
Creator Renard, Mathieu Daniel Marco; Ukrow, Johann; Elmaleh, Margot; Evans, Dominic; Yifan Wu; Xitong Liang; Laurent, gilles
Publisher Edmond
Publication Year 2026
OpenAccess true
Contact g.laurent(at)brain.mpg.de
Representation
Language English
Resource Type Dataset
Version 1
Discipline Other