NeurIPS 2025poster0 citations

Connectome-Based Modelling Reveals Orientation Maps in the Drosophila Optic Lobe

Jia-Nuo Liew, Shenghan Lin, Bowen Chen, Wei Zhang, Xiaowei Zhu, Xiaolin Hu

Abstract

The ability to extract oriented edges from visual input is a core computation across animal vision systems. Orientation maps, long associated with the layered architecture of the mammalian visual cortex, systematically organise neurons by their preferred edge orientation. Despite lacking cortical structures, the *Drosophila melanogaster* brain contains feature-selective neurons and exhibits complex visual detection capacity, raising the question of whether map-like vision representations can emerge without cortical infrastructure. We integrate a complete fruit fly brain connectome with biologically grounded spiking neuron models to simulate neuroprocessing in the fly visual system. By driving the network with oriented stimuli and analysing downstream responses, we show that coherent orientation maps can emerge from purely connectome-constrained dynamics. These results suggest that species of independent origin could evolve similar visual structures.

Computational NeuroscienceDrosophila Visual SystemOrientation MapsLeaky Integrate-and-Fire ModelConnectome Simulation
BibTeX
@inproceedings{
liew2025connectomebased,
title={Connectome-Based Modelling Reveals Orientation Maps in the Drosophila Optic Lobe},
author={Jia-Nuo Liew and Shenghan Lin and Bowen Chen and Wei Zhang and Xiaowei Zhu and Xiaolin Hu},
booktitle={The Thirty-ninth Annual Conference on Neural Information Processing Systems},
year={2025},
url={https://openreview.net/forum?id=vzgkhVS5EC}
}
Connectome-Based Modelling Reveals Orientation Maps in the Drosophila Optic Lobe · NeurIPS 2025