TY - JOUR T1 - The brain of <em>Cataglyphis</em> ants: neuronal organization and visual projections JF - bioRxiv DO - 10.1101/2020.02.19.954461 SP - 2020.02.19.954461 AU - Jens Habenstein AU - Emad Amini AU - Kornelia Grübel AU - Basil el Jundi AU - Wolfgang Rössler Y1 - 2020/01/01 UR - http://biorxiv.org/content/early/2020/02/19/2020.02.19.954461.abstract N2 - Cataglyphis ants are known for their outstanding navigational abilities. They return to their inconspicuous nest after far-reaching foraging trips using path integration, and whenever available, learn and memorize visual features of panoramic sceneries. To achieve this, the ants combine directional visual information from celestial cues and panoramic scenes with distance information from an intrinsic odometer. The largely vision-based navigation in Cataglyphis requires sophisticated neuronal networks to process the broad repertoire of visual stimuli. Although Cataglyphis ants have been subject to many neuroethological studies, little is known about the general neuronal organization of their central brain and the visual pathways beyond major circuits. Here, we provide a comprehensive, three-dimensional neuronal map of synapse-rich neuropils in the brain of Cataglyphis nodus including major connecting fiber systems. In addition, we examined neuronal tracts underlying the processing of visual information in more detail. This study revealed a total of 33 brain neuropils and 30 neuronal fiber tracts including six distinct tracts between the optic lobes and the cerebrum. We also discuss the importance of comparative studies on insect brain architecture for a profound understanding of neuronal networks and their function. ER -