Palombi Olivier, Shin Jae-Won, Watson Charles, Paxinos George
POWMRI, The University of New South Wales, Randwick NSW, Australia.
Neuroinformatics. 2006 Winter;4(4):299-317. doi: 10.1385/NI:4:4:299.
A number of knowledge management systems have been developed to allow users to have access to large quantity of neuroanatomical data. The advent of three-dimensional (3D) visualization techniques allows users to interact with complex 3D object. In order to better understand the structural and functional organization of the brain, we present Neuroanatomical Affiliations Visualization-Interface System (NAVIS) as the original software to see brain structures and neuroanatomical affiliations in 3D. This version of NAVIS has made use of the fifth edition of "The Rat Brain in Stereotaxic coordinates" (Paxinos and Watson, 2005). The NAVIS development environment was based on the scripting language name Python, using visualization toolkit (VTK) as 3D-library and wxPython for the graphic user interface. The following manuscript is focused on the nucleus of the solitary tract (Sol) and the set of affiliated structures in the brain to illustrate the functionality of NAVIS. The nucleus of the Sol is the primary relay center of visceral and taste information, and consists of 14 distinct subnuclei that differ in cytoarchitecture, chemoarchitecture, connections, and function. In the present study, neuroanatomical projection data of the rat Sol were collected from selected literature in PubMed since 1975. Forty-nine identified projection data of Sol were inserted in NAVIS. The standard XML format used as an input for affiliation data allows NAVIS to update data online and/or allows users to manually change or update affiliation data. NAVIS can be extended to nuclei other than Sol.
已经开发了许多知识管理系统,以便用户能够访问大量神经解剖学数据。三维(3D)可视化技术的出现使用户能够与复杂的3D对象进行交互。为了更好地理解大脑的结构和功能组织,我们提出了神经解剖学关联可视化接口系统(NAVIS),作为一款用于以3D形式查看脑结构和神经解剖学关联的原创软件。此版本的NAVIS使用了《立体定位坐标中的大鼠脑》(帕西诺斯和沃森,2005年)第五版。NAVIS的开发环境基于名为Python的脚本语言,使用可视化工具包(VTK)作为3D库,并使用wxPython作为图形用户界面。以下手稿重点介绍孤束核(Sol)及其在大脑中的一组附属结构,以说明NAVIS的功能。孤束核是内脏和味觉信息的主要中继中心,由14个不同的亚核组成,这些亚核在细胞结构、化学结构、连接和功能方面存在差异。在本研究中,大鼠孤束核的神经解剖学投射数据是从1975年以来PubMed中选定的文献中收集的。49条已确定的孤束核投射数据被插入到NAVIS中。用作关联数据输入的标准XML格式使NAVIS能够在线更新数据和/或允许用户手动更改或更新关联数据。NAVIS可以扩展到孤束核以外的其他核团。