梨状皮质
嗅球
神经科学
生物
嗅觉系统
感觉系统
刺激(心理学)
刺激形态
神经元
中枢神经系统
心理学
心理治疗师
作者
Yushu Chen,Xiaoyin Chen,Batuhan Başerdem,Huiqing Zhan,Yan Li,Martin B. Davis,Justus M. Kebschull,Anthony M. Zador,Alexei A. Koulakov,Dinu F. Albeanu
出处
期刊:Cell
[Cell Press]
日期:2022-10-01
卷期号:185 (22): 4117-4134.e28
被引量:76
标识
DOI:10.1016/j.cell.2022.09.038
摘要
In most sensory modalities, neuronal connectivity reflects behaviorally relevant stimulus features, such as spatial location, orientation, and sound frequency. By contrast, the prevailing view in the olfactory cortex, based on the reconstruction of dozens of neurons, is that connectivity is random. Here, we used high-throughput sequencing-based neuroanatomical techniques to analyze the projections of 5,309 mouse olfactory bulb and 30,433 piriform cortex output neurons at single-cell resolution. Surprisingly, statistical analysis of this much larger dataset revealed that the olfactory cortex connectivity is spatially structured. Single olfactory bulb neurons targeting a particular location along the anterior-posterior axis of piriform cortex also project to matched, functionally distinct, extra-piriform targets. Moreover, single neurons from the targeted piriform locus also project to the same matched extra-piriform targets, forming triadic circuit motifs. Thus, as in other sensory modalities, olfactory information is routed at early stages of processing to functionally diverse targets in a coordinated manner.
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