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NEOBASE:Databasing the Neocortical Microcircuit

机译:NeoBase:数据库新奇微电路

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Mammals adapt to a rapidly changing world because of the sophisticated perceptual and cognitive function enabled by the neocortex. The neocortex, which has expanded to constitute nearly 80% of the human brain seems to have arisen from repeated duplication of a stereotypical template of neurons and synaptic circuits with subtle specializations in different brain regions and species. Determining the design and function of this micro circuitry is therefore of paramount importance to understanding normal and abnormal higher brain function. Recent advances in recording synaptically-coupled neurons has allowed rapid dissection of the neocortical microcircuitry thus yielding a massive amount of quantitative anatomical, electrical and gene expression data on the neurons and the synaptic circuits that connect the neurons. Due to the availability of the above mentioned data, it has now become imperative to database the neurons of the microcircuit and their synaptic connections. The NEOBASE project, aims to archive the neocortical microcircuit data in a manner that facilitates development of advanced data mining applications, statistical and bioinfonnatics analyses tools, custom microcircuit builders, and visualization and simulation applications. The database architecture is based on ROOT, a software environment that allows the construction of an object oriented database with numerous relational capabilities. The proposed architecture allows construction of a database that closely mimics the architecture of the real microcircuit, which facilitates the interface with virtually any application, allows for data format evolution, and aims for full interoperability with other databases. NEOBASE will provide an important resource and research tool for studying the microcircuit basis of normal and abnormal neocortical function. The database will be available to local as well as remote users using Grid based tools and technologies.
机译:由于Neocortex使能复杂的感知和认知功能,哺乳动物适应了一个迅速变化的世界。扩大到近80%的人大脑的Neocortex似乎从重复重复的神经元和突触电路的陈规定型模板具有不同的脑区和物种的微妙专业。因此,确定该微电路的设计和功能对于了解正常和异常的大脑功能至关重要。记录突触偶联神经元的最新进展使Neocortical微型速率的快速解剖如此,因此在神经元和连接神经元的突触电路上产生大量的定量解剖学,电气和基因表达数据。由于上述数据的可用性,它现在已经成为数据库微电路的神经元及其突触连接的必要条件。 Neobase项目,旨在以促进高级数据挖掘应用的方式归档新消介质微电路数据,统计和生物型突发性分析工具,定制微电路构建器和可视化和仿真应用。数据库架构基于根,一个软件环境,允许构建具有许多关系功能的面向对象数据库。所提出的架构允许构建密切模仿实际微电路的体系结构的数据库,这有助于与几乎任何应用程序的接口,允许数据格式的演化,并旨在与其他数据库完全互操作性。 NeoBase将提供一种重要的资源和研究工具,用于研究正常和异常新奇函数的微电路。使用基于网格的工具和技术,数据库将可用于本地以及远程用户。

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