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Information flow through neural circuits for pheromone orientation

机译:信息流通过神经回路进行信息素定向

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摘要

Moths use a sophisticated olfactory navigation strategy for resource localization. Here we investigate the neuronal circuits involved in sensory processing to generate locomotor commands for pheromone-source orientation in the moth. We identify a candidate pathway for pheromone processing in the protocerebrum using a mass-staining technique. Our intracellular recordings of pheromone responsiveness detect four major circuits, including a newly identified unstructured neuropil, the superior medial protocerebrum, which supplies output to the lateral accessory lobe (LAL), the premotor centre for walking commands. Interneurons innervating the lower division of the LAL elicited longer responses than those innervating the upper division. Descending interneurons innervating the lower division of the LAL showed a state-dependent flip-flop response. In contrast, input from other visual areas in the protocerebrum mostly converge onto the upper division of the LAL. These results reveal the basic organization of the LAL: the upper division is identified as a protocerebral hub that receives inputs from various areas, while the lower division generates long-lasting activity for locomotor command.
机译:飞蛾使用复杂的嗅觉导航策略进行资源本地化。在这里,我们调查涉及感觉处理的神经元回路,以产生用于飞蛾中信息素源定向的运动命令。我们确定使用质量染色技术在原大脑中信息素处理的候选途径。我们对信息素反应性的细胞内记录可检测到四个主要回路,包括新近鉴定出的非结构化神经纤维,即上原内侧大脑皮层,该神经皮层层的输出可输出至外侧副叶(LAL),即行走命令的运动前中心。支配LAL下部的神经元引起的反应比支配上部的神经元更长。支配LAL下部的中间神经元下降显示了状态相关的触发器响应。相反,来自原大脑其他视觉区域的输入大部分会收敛到LAL的上部。这些结果揭示了LAL的基本组织:上层部门被确定为一个接收来自各个区域的输入的前脑枢纽,而下层部门则为运动指挥产生了持久的活动。

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