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The complete connectome of a learning and memory centre in an insect brain

机译:昆虫大脑中学习和记忆中心的完整连接体

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摘要

Associating stimuli with positive or negative reinforcement is essential for survival, but a complete wiring diagram of a higher-order circuit supporting associative memory has not been previously available. Here we reconstruct one such circuit at synaptic resolution, the Drosophila larval mushroom body. We find that most Kenyon cells integrate random combinations of inputs but that a subset receives stereotyped inputs from single projection neurons. This organization maximizes performance of a model output neuron on a stimulus discrimination task. We also report a novel canonical circuit in each mushroom body compartment with previously unidentified connections: reciprocal Kenyon cell to modulatory neuron connections, modulatory neuron to output neuron connections, and a surprisingly high number of recurrent connections between Kenyon cells. Stereotyped connections found between output neurons could enhance the selection of learned behaviours. The complete circuit map of the mushroom body should guide future functional studies of this learning and memory centre.
机译:将刺激与正向或负向增强相关联对于生存至关重要,但是以前尚无支持关联记忆的高阶电路的完整接线图。在这里,我们以突触分辨率重建这样的电路,果蝇幼虫蘑菇体。我们发现大多数Kenyon细胞整合了输入的随机组合,但是一个子集从单个投影神经元接收定型输入。该组织在刺激识别任务上最大化模型输出神经元的性能。我们还报告了每个蘑菇体隔室中以前未知的连接的新型规范电路:相互的Kenyon细胞与调节性神经元连接,调节性神经元与输出神经元连接以及Kenyon细胞之间的大量复发连接。在输出神经元之间发现的刻板印象的联系可以增强对学习行为的选择。蘑菇体的完整电路图应指导该学习和记忆中心的未来功能研究。

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