Laboratory of Neuro Imaging, Department of Neurology, David Geffen School of Medicine, University of California, Los Angeles Los Angeles, CA, USA.
Front Neuroanat. 2012 Aug 7;6:30. doi: 10.3389/fnana.2012.00030. eCollection 2012.
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 (www.MouseConnectome.org). 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.
我们介绍了第一个由加州大学洛杉矶分校的 Mouse Connectome Project(MCP)产生的用于鼠标嗅觉连接数据的开放资源。MCP 的目标是使用双 coinjection 示踪方法为 C57Bl/6J 小鼠组装全脑连接图谱。每个 coinjection 由一个顺行和一个逆行示踪剂组成,这具有同时识别传出和传入途径并直接识别注射部位的相互连接的优势。双 coinjections 的系统应用有可能揭示注射之间的交互站,并允许在网络级别上研究连接。为了方便使用数据,我们通过在线交互式可视化工具 iConnectome 公开提供原始图像,用户可以在其中查看和注释高分辨率、多荧光连接数据(www.MouseConnectome.org)。目前,已经在 iConnectome 中可查看 18 个嗅球(MOB)案例中的数据(约 72 个通路;36 个传出/36 个传入),这些数据来自于嗅球的不同区域进行的系统双 coinjections,并具有相应的图谱水平及其自身的明场细胞构筑背景。其他嗅球(AOB)、前嗅核(AON)和其他嗅觉皮质区的注射和辅助嗅球的注射将逐渐提供。对嗅球不同区域的连接进行分析揭示了一种新颖的、地形排列的嗅球投射路线图,显示了与前嗅皮质区(PIR)相比,嗅球的连接具有不同的连接模式,并且揭示了一些既定的皮质嗅觉投射的新方面。