bioRxiv · 10.1101/2022.11.08.515692
Synaptic Connectivity of Afferent Inputs onto Projection Neurons in the Songbird HVC
Abstract
Sensorimotor computations for learning and behavior rely on precise patterns of synaptic connectivity. Yet, we typically lack the synaptic wiring diagrams for long-range connections between sensory and motor circuits in the brain. Here we provide the synaptic wiring diagram for sensorimotor circuits involved in learning and production of male zebra finch song, a natural and ethologically relevant behavior. We examined the functional synaptic connectivity from the 4 main sensory afferent pathways onto the 3 known classes of projection neurons of the song premotor cortical region HVC. Recordings from hundreds of identified projection neurons reveal rules for monosynaptic connectivity and the existence of polysynaptic ensembles of excitatory and inhibitory neuronal populations in HVC. Circuit tracing further identifies novel connections between HVCs presynaptic partners. Our results indicate a modular organization of ensemble-like networks for integrating long-range input with local circuits, providing important context for information flow and computations for learned vocal behavior.
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Trusel, M., Alam, D., Roberts, T. F.. 2022-11-09. Synaptic Connectivity of Afferent Inputs onto Projection Neurons in the Songbird HVC. https://doi.org/10.1101/2022.11.08.515692
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