Prominent involvement of acetylcholine in shaping stable olfactory representation across the Drosophila brain
Fan, J.; Wang, Y.; Li, L.; He, J.; Zhao, Z.; Deng, F.; Li, G.; Li, X.; Zhou, Y.; Zhao, J.; Li, Y.; Wu, J.; Fang, L.; Dai, Q.
Show abstract
Despite the vital role of neuromodulation in the neural system, the specific spatiotemporal dynamics of neuromodulators and their interactions with neuronal activities in vivo are still unclear, hampering our understanding of their information representation and functional contributions systemically. To address this problem, we employed two-photon synthetic aperture microscopy (2pSAM) to record long-term neuronal and neuromodulatory olfactory responses across the Drosophila brain at high speed. Our results revealed distinct response properties, global information propagation, functional connectivity, and odor identity representation among neuronal, cholinergic, and serotoninergic dynamics across multiple brain regions. We discovered the compensation between neuronal activity and cholinergic dynamics, both in the odor identity representation across the brain and the functional connectivity network structures of specific brain regions. Moreover, employing low-dimensional manifold and functional connectivity network analyses, we characterized the stable representation of cholinergic dynamics over a long term. Collectively, our unbiased and comprehensive investigation unveiled the prominent involvement of acetylcholine (ACh) in shaping olfactory representation across the brain, underscoring the inadequacy of solely considering neuronal activities when examining information representation of the brain.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Cognitive boundary signals in the human medial temporal lobe shape episodic memory representation 98%
- Latent neural population dynamics underlying normal breathing, opioid induced respiratory depression, and gasping 98%
- Mesophasic organization of GABAA receptors in hippocampal inhibitory synapse 97%
Similar papers in this journal
- A cortical circuit mechanism for coding and updating task structural knowledge in inference-based decision-making 97%
- Ventral frontostriatal circuitry mediates the computation of reinforcement from symbolic gains and losses 97%
- Whole-brain mapping of effective connectivity by fMRI with cortex-wide patterned optogenetics 97%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.