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整合数据库和专家系统以分析脑结构:连接、相似性和同源性。

Integrating databases and expert systems for the analysis of brain structures: connections, similarities, and homologies.

作者信息

Bota Mihail, Arbib Michael A

机构信息

NIBS Program in Neurosciences, University of Southern California, Los Angeles, CA 90089-2520, USA.

出版信息

Neuroinformatics. 2004;2(1):19-58. doi: 10.1385/NI:2:1:019.

Abstract

The NeuroHomology Database system (NHDB) combines databases related to brain structures from different species with different knowledge management systems (KMSs) for systematization, evaluation and processing neurobiological data. Special attention is assessment of similarity of data from different species as a basis for exploring neural homologies. NHDB includes modules that handle brain structure and connectivity data, as well as inference engines for evaluation of the stored neurobiological information. The spatial inference engine evaluates the possible topological relations between cortical structures in different neuroanatomical atlases. The connectivity inference engine evaluates the reliability of information pertaining to fiber tracts as those are reflected in the literature. The inference engine for translation of neuroanatomical connections in different atlases evaluates the probability of existence of connections of interest in different parcellation schemes. Finally, the similarity inference engine calculates the overall degree of similarity of pairs of brain structures from different species by taking into account a set of eight criteria. We present examples of search for information in NHDB system, inferences of relations between cortical structures from equivalent neuroanatomical atlases, reconstruction of functional networks of brain structures from data collated from the literature, translation of connectivity matrices in equivalent parcellation schemes, and evaluations of similarities of brain structures from humans, macaques and rats.

摘要

神经同源性数据库系统(NHDB)将来自不同物种的与脑结构相关的数据库与不同的知识管理系统(KMS)相结合,用于神经生物学数据的系统化、评估和处理。特别关注评估来自不同物种的数据的相似性,以此作为探索神经同源性的基础。NHDB包括处理脑结构和连接性数据的模块,以及用于评估所存储的神经生物学信息的推理引擎。空间推理引擎评估不同神经解剖图谱中皮质结构之间可能的拓扑关系。连接性推理引擎评估文献中所反映的与纤维束相关信息的可靠性。不同图谱中神经解剖连接翻译的推理引擎评估在不同分区方案中感兴趣的连接存在的概率。最后,相似性推理引擎通过考虑一组八个标准来计算来自不同物种的脑结构对的整体相似程度。我们展示了在NHDB系统中搜索信息的示例、来自等效神经解剖图谱的皮质结构之间关系的推理、根据文献整理的数据重建脑结构功能网络、等效分区方案中连接矩阵的转换以及对人类、猕猴和大鼠脑结构相似性的评估。

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