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Google Research Google AI Learn about all our AI Google DeepMind Explore the frontier of AI Google Labs Try our AI experiments Research Resources Conferences & events Careers Blog About Search Home Publications Sexual dimorphism in the complete connectome of the Drosophila male central nervous system Stuart Berg Isabella R Beckett Marta Costa Philipp Schlegel MichaƂ Januszewski Elizabeth C Marin Aljoscha Nern Stephan Preibisch Wei Qiu Shin-ya Takemura Andrew Champion Reed A. George Gary Huang William Katz Christopher Ordish Ken Hayworth Eric Trautman Viren Jain Vivek Jayaraman Wyatt Korff Geoffrey W Meissner Sandro Romani Jan Funke Christopher Knecht Stephan Saalfeld Louis Scheffer Scott Waddell Gwyneth Card Carlos Ribeiro Michael B. Reiser Harald Hess Gerry Rubin Gregory S.X.E. Jefferis bioRxiv (2026) Download Google Scholar Copy Bibtex Abstract Sex differences in behaviour exist across all animals, typically under strong genetic regulation. In Drosophila, fruitless/doublesex transcription factors can identify dimorphic neurons but their organisation into functional circuits remains unclear. We present the connectome of the entire Drosophila male central nervous system. This contains 166,691 neurons spanning the brain and nerve cord, fully proofread and annotated including fruitless/doublesex expression and 11,691 types. We provide the first comprehensive comparison between male and female brain connectomes to synaptic resolution, finding 7,205 isomorphic, 114 dimorphic, 262 male-specific and 69 female-specific types. This resource enables analysis of full sensory-to-motor circuits underlying complex behaviours and the impact of dimorphic elements. Sex-specific/dimorphic neurons are concentrated in higher brain centres while the sensory and motor periphery are largely isomorphic. Within higher centres, male-specific connections are organised into hotspots defined by male-specific neurons or arbours. Numerous circuit switches reroute sensory information to form antagonistic circuits controlling opposing behaviours. (Full author list included with the paper.) Meet the teams driving innovation Our teams advance the state of the art through research, systems engineering, and collaboration across Google. See our teams Follow us Explore our other initiatives Google AI Discover how Google AI is committed to enriching knowledge and solving complex challenges Products Build Research Responsibility Societal Impact About Google Cloud High-performance infrastructure for cloud computing, data analytics & machine learning Overview Solutions Products Pricing Resources Google DeepMind Our mission is to build AI responsibly to benefit humanity Models Research Science About Google Labs Explore the future of AI responsibly with Google Labs About Experiments Stay connected About Google Google Products Privacy Terms Cookies management controls ×