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Comprehensive connectivity of the mouse main olfactory bulb: analysis and online digital atlas

机译:鼠标主嗅球的全面连接:分析和在线数字地图集

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摘要

We introduce the first open resource for mouse olfactory connectivity data produced as part of the Mouse Connectome Project (MCP) at UCLA. The MCP aims to assemble a whole-brain connectivity atlas for the C57Bl/6J mouse using a double coinjection tracing method. Each coinjection consists of one anterograde and one retrograde tracer, which affords the advantage of simultaneously identifying efferent and afferent pathways and directly identifying reciprocal connectivity of injection sites. The systematic application of double coinjections potentially reveals interaction stations between injections and allows for the study of connectivity at the network level. To facilitate use of the data, raw images are made publicly accessible through our online interactive visualization tool, the iConnectome, where users can view and annotate the high-resolution, multi-fluorescent connectivity data (). Systematic double coinjections were made into different regions of the main olfactory bulb (MOB) and data from 18 MOB cases (~72 pathways; 36 efferent/36 afferent) currently are available to view in iConnectome within their corresponding atlas level and their own bright-field cytoarchitectural background. Additional MOB injections and injections of the accessory olfactory bulb (AOB), anterior olfactory nucleus (AON), and other olfactory cortical areas gradually will be made available. Analysis of connections from different regions of the MOB revealed a novel, topographically arranged MOB projection roadmap, demonstrated disparate MOB connectivity with anterior versus posterior piriform cortical area (PIR), and exposed some novel aspects of well-established cortical olfactory projections.
机译:我们介绍了作为UCLA的Mouse Connectome Project(MCP)的一部分而产生的鼠标嗅觉连接数据的第一个开放资源。 MCP旨在使用双共注射跟踪方法为C57Bl / 6J鼠标组装全脑连接图集。每个共同注射均由一个顺行示踪剂和一个逆行示踪剂组成,其优点是可以同时识别传出和传入途径,并直接识别注射部位的相互连通性。双共注射的系统应用可能揭示注射之间的相互作用,并允许研究网络级别的连通性。为了方便使用数据,可通过我们的在线交互式可视化工具iConnectome公开获取原始图像,用户可以在其中查看和注释高分辨率的多荧光连接数据()。在主要嗅球(MOB)的不同区域进行了系统性双注射,目前可以在iConnectome中以其对应的图谱水平和自己的明亮状态从18个MOB病例(〜72个途径; 36个传入/ 36个传入)中查看数据。领域的细胞架构背景。将逐步提供其他MOB注射以及副嗅球(AOB),前嗅核(AON)和其他嗅觉皮质区域的注射。对来自MOB不同区域的连接进行的分析揭示了一种新颖的,按地形排列的MOB投影路线图,演示了不同的MOB连通性与梨状前皮质区和后梨状皮层皮质区(PIR),并揭示了完善的皮质嗅觉投影的一些新颖方面。

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