Centre for Molecular Biology and Neuroscience, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.
PLoS One. 2011;6(8):e22669. doi: 10.1371/journal.pone.0022669. Epub 2011 Aug 1.
Detailed knowledge about the anatomical organization of axonal connections is important for understanding normal functions of brain systems and disease-related dysfunctions. Such connectivity data are typically generated in neuroanatomical tract-tracing experiments in which specific axonal connections are visualized in histological sections. Since journal publications typically only accommodate restricted data descriptions and example images, literature search is a cumbersome way to retrieve overviews of brain connectivity. To explore more efficient ways of mapping, analyzing, and sharing detailed axonal connectivity data from the rodent brain, we have implemented a workflow for data production and developed an atlas system tailored for online presentation of axonal tracing data. The system is available online through the Rodent Brain WorkBench (www.rbwb.org; Whole Brain Connectivity Atlas) and holds experimental metadata and high-resolution images of histological sections from experiments in which axonal tracers were injected in the primary somatosensory cortex. We here present the workflow and the data system, and exemplify how the online image repository can be used to map different aspects of the brain-wide connectivity of the rat primary somatosensory cortex, including not only presence of connections but also morphology, densities, and spatial organization. The accuracy of the approach is validated by comparing results generated with our system with findings reported in previous publications. The present study is a contribution to a systematic mapping of rodent brain connections and represents a starting point for further large-scale mapping efforts.
详细了解轴突连接的解剖组织对于理解大脑系统的正常功能和与疾病相关的功能障碍非常重要。此类连通性数据通常是在神经解剖追踪实验中生成的,其中在组织学切片中可视化特定的轴突连接。由于期刊出版物通常只容纳有限的数据描述和示例图像,因此文献搜索是检索大脑连通性概述的繁琐方法。为了探索更有效的方法来映射、分析和共享来自啮齿动物大脑的详细轴突连通性数据,我们实施了数据生产工作流程,并开发了一个专门用于在线呈现轴突追踪数据的图谱系统。该系统可通过啮齿动物脑工作平台(www.rbwb.org;全脑连通性图谱)在线获取,其中包含实验元数据和组织学切片的高分辨率图像,这些实验中在初级体感皮层注射了轴突示踪剂。我们在此介绍工作流程和数据系统,并举例说明如何使用在线图像存储库来绘制大鼠初级体感皮层全脑连通性的不同方面,包括不仅存在连接,还有形态、密度和空间组织。通过将我们的系统生成的结果与之前出版物中报告的结果进行比较,验证了该方法的准确性。本研究是对啮齿动物大脑连接进行系统映射的贡献,也是进一步进行大规模映射工作的起点。