Bjaalie J G, Leergaard T B, Lillehaug S, Odeh F, Moene I A, Kjode J O, Darin D
Neural Systems and Graphics Computing Laboratory, Centre for Molecular Biology and Neuroscience & Institute of Basic Medical Sciences, University of Oslo, P.O. Box 1105 Blindern, N-0317 Oslo, Norway.
Neuroscience. 2005;136(3):681-95. doi: 10.1016/j.neuroscience.2005.06.036.
Integration of dispersed and complicated information collected from the brain is needed to build new knowledge. But integration may be hampered by rigid presentation formats, diversity of data formats among laboratories, and lack of access to lower level data. We have addressed some of the fundamental issues related to this challenge at the level of anatomical data, by producing a coordinate based digital atlas and database application for a major projection system in the rat brain: the cerebro-ponto-cerebellar system. This application, Functional Anatomy of the Cerebro-Cerebellar System in rat (FACCS), is available via the Rodent Brain WorkBench (http://www.rbwb.org). The data included are x,y,z-coordinate lists describing exact distributions of tissue elements (axonal terminal fields of axons, or cell bodies) that are labeled with axonal tracing techniques. All data are translated to a common local coordinate system to facilitate across animal comparison. A search capability allows queries based on, e.g. location of tracer injection sites, tracer category, size of the injection sites, and contributing author. A graphic search tool allows the user to move a volume cursor inside a coordinate system to detect particular injection sites having connections to a specific tissue volume at chosen density levels. Tools for visualization and analysis of selected data are included, as well as an option to download individual data sets for further analysis. With this application, data and metadata from different experiments are mapped into the same information structure and made available for re-use and re-analysis in novel combinations. The application is prepared for future handling of data from other projection systems as well as other data categories.
要构建新知识,需要整合从大脑收集的分散且复杂的信息。但整合可能会受到僵化的呈现格式、实验室间数据格式的多样性以及无法获取底层数据的阻碍。我们已在解剖学数据层面解决了与这一挑战相关的一些基本问题,通过为大鼠大脑中的一个主要投射系统——脑桥小脑系统制作了一个基于坐标的数字图谱和数据库应用程序。这个应用程序,即大鼠脑桥小脑系统功能解剖学(FACCS),可通过啮齿动物脑工作台(http://www.rbwb.org)获取。所包含的数据是x、y、z坐标列表,描述了用轴突追踪技术标记的组织元素(轴突的终末场或细胞体)的精确分布。所有数据都被转换到一个通用的局部坐标系中,以方便跨动物比较。搜索功能允许基于例如示踪剂注射部位的位置、示踪剂类别、注射部位大小和作者进行查询。图形搜索工具允许用户在坐标系内移动体积光标,以检测在选定密度水平下与特定组织体积有连接的特定注射部位。还包括用于可视化和分析选定数据的工具,以及下载单个数据集进行进一步分析的选项。通过这个应用程序,来自不同实验的数据和元数据被映射到相同的信息结构中,并可供以新的组合方式进行重新使用和重新分析。该应用程序已准备好用于未来处理来自其他投射系统以及其他数据类别的数据。