National Center for Microscopy and Imaging Research, University of California USA.
Front Neuroinform. 2007 Nov 2;1:3. doi: 10.3389/neuro.11.003.2007. eCollection 2007.
The complexity of the nervous system requires high-resolution microscopy to resolve the detailed 3D structure of nerve cells and supracellular domains. The analysis of such imaging data to extract cellular surfaces and cell components often requires the combination of expert human knowledge with carefully engineered software tools. In an effort to make better tools to assist humans in this endeavor, create a more accessible and permanent record of their data, and to aid the process of constructing complex and detailed computational models, we have created a core of formalized knowledge about the structure of the nervous system and have integrated that core into several software applications. In this paper, we describe the structure and content of a formal ontology whose scope is the subcellular anatomy of the nervous system (SAO), covering nerve cells, their parts, and interactions between these parts. Many applications of this ontology to image annotation, content-based retrieval of structural data, and integration of shared data across scales and researchers are also described.
神经系统的复杂性要求高分辨率显微镜来解析神经细胞和超细胞域的详细 3D 结构。为了提取细胞表面和细胞成分,对这些成像数据的分析通常需要将专家的人类知识与精心设计的软件工具相结合。为了制作更好的工具来帮助人类完成这一工作,创建一个更易于访问和永久记录其数据的记录,并帮助构建复杂和详细的计算模型的过程,我们已经创建了一个关于神经系统结构的形式化知识核心,并将该核心集成到了几个软件应用程序中。在本文中,我们描述了一个形式本体的结构和内容,其范围是神经系统的亚细胞解剖结构(SAO),涵盖神经细胞、它们的部分以及这些部分之间的相互作用。本文还描述了该本体在图像注释、基于内容的结构数据检索以及跨尺度和研究人员共享数据的集成方面的许多应用。