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基于神经连接图谱的知识综合。

Knowledge synthesis with maps of neural connectivity.

机构信息

Information Sciences Institute, University of Southern California Marina del Rey, CA, USA.

出版信息

Front Neuroinform. 2011 Nov 1;5:24. doi: 10.3389/fninf.2011.00024. eCollection 2011.

Abstract

This paper describes software for neuroanatomical knowledge synthesis based on neural connectivity data. This software supports a mature methodology developed since the early 1990s. Over this time, the Swanson laboratory at USC has generated an account of the neural connectivity of the sub-structures of the hypothalamus, amygdala, septum, hippocampus, and bed nucleus of the stria terminalis. This is based on neuroanatomical data maps drawn into a standard brain atlas by experts. In earlier work, we presented an application for visualizing and comparing anatomical macro connections using the Swanson third edition atlas as a framework for accurate registration. Here we describe major improvements to the NeuARt application based on the incorporation of a knowledge representation of experimental design. We also present improvements in the interface and features of the data mapping components within a unified web-application. As a step toward developing an accurate sub-regional account of neural connectivity, we provide navigational access between the data maps and a semantic representation of area-to-area connections that they support. We do so based on an approach called "Knowledge Engineering from Experimental Design" (KEfED) model that is based on experimental variables. We have extended the underlying KEfED representation of tract-tracing experiments by incorporating the definition of a neuronanatomical data map as a measurement variable in the study design. This paper describes the software design of a web-application that allows anatomical data sets to be described within a standard experimental context and thus indexed by non-spatial experimental design features.

摘要

本文介绍了一种基于神经连接数据的神经解剖学知识综合软件。该软件支持自 20 世纪 90 年代初以来发展成熟的方法。在此期间,南加州大学的 Swanson 实验室生成了下丘脑、杏仁核、隔核、海马体和终纹床核亚结构的神经连接图谱。这是基于专家绘制到标准脑图谱中的神经解剖学数据图谱。在早期工作中,我们提出了一种应用程序,用于使用 Swanson 第三版图谱可视化和比较解剖宏观连接,作为准确注册的框架。在这里,我们描述了基于实验设计知识表示的 NeuARt 应用程序的主要改进。我们还改进了统一网络应用程序内数据映射组件的界面和功能。作为开发神经连接精确亚区图谱的一步,我们提供了数据图谱之间的导航访问以及它们支持的区域间连接的语义表示。我们基于一种称为“基于实验变量的知识工程”(KEfED)模型的方法来实现这一点。我们通过将神经解剖学数据图谱的定义作为研究设计中的测量变量,扩展了追踪实验的基础 KEfED 表示。本文介绍了一种网络应用程序的软件设计,该设计允许在标准实验环境中描述解剖数据集,并通过非空间实验设计特征对其进行索引。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c303/3205380/89545cee04d4/fninf-05-00024-g001.jpg

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