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NeuroMorpho.Org Implementation of Digital Neuroscience: Dense Coverage and Integration with the NIF

机译:NeuroMorpho.Org数字神经科学的实现:覆盖范围广且与NIF集成

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摘要

Neuronal morphology affects network connectivity, plasticity, and information processing. Uncovering the design principles and functional consequences of dendritic and axonal shape necessitates quantitative analysis and computational modeling of detailed experimental data. Digital reconstructions provide the required neuromorphological descriptions in a parsimonious, comprehensive, and reliable numerical format. NeuroMorpho.Org is the largest web-accessible repository service for digitally reconstructed neurons and one of the integrated resources in the Neuroscience Information Framework (NIF). Here we describe the NeuroMorpho.Org approach as an exemplary experience in designing, creating, populating, and curating a neuroscience digital resource. The simple three-tier architecture of NeuroMorpho.Org (web client, web server, and relational database) encompasses all necessary elements to support a large-scale, integrate-able repository. The data content, while heterogeneous in scientific scope and experimental origin, is unified in format and presentation by an in house standardization protocol. The server application (MRALD) is secure, customizable, and developer-friendly. Centralized processing and expert annotation yields a comprehensive set of metadata that enriches and complements the raw data. The thoroughly tested interface design allows for optimal and effective data search and retrieval. Availability of data in both original and standardized formats ensures compatibility with existing resources and fosters further tool development. Other key functions enable extensive exploration and discovery, including 3D and interactive visualization of branching, frequently measured morphometrics, and reciprocal links to the original PubMed publications. The integration of NeuroMorpho.Org with version-1 of the NIF (NIFv1) provides the opportunity to access morphological data in the context of other relevant resources and diverse subdomains of neuroscience, opening exciting new possibilities in data mining and knowledge discovery. The outcome of such coordination is the rapid and powerful advancement of neuroscience research at both the conceptual and technological level.
机译:神经元形态会影响网络连接性,可塑性和信息处理。揭示树突状和轴突形状的设计原理和功能后果,需要对详细的实验数据进行定量分析和计算建模。数字重建以简约,全面和可靠的数字格式提供所需的神经形态学描述。 NeuroMorpho.Org是用于数字重建神经元的最大的Web访问存储库服务,并且是Neuroscience Information Framework(NIF)中的集成资源之一。在这里,我们将NeuroMorpho.Org方法描述为设计,创建,填充和管理神经科学数字资源的典范经验。 NeuroMorpho.Org(Web客户端,Web服务器和关系数据库)的简单三层体系结构包含了支持大规模可集成存储库的所有必要元素。数据内容虽然在科学范围和实验来源上是异类的,但通过内部标准化协议在格式和表示方式上是统一的。服务器应用程序(MRALD)是安全的,可自定义的,并且对开发人员友好。集中处理和专家注释产生了一套完整的元数据,可以丰富和补充原始数据。经过全面测试的界面设计可实现最佳且有效的数据搜索和检索。原始和标准化格式的数据可用性确保了与现有资源的兼容性并促进了进一步的工具开发。其他关键功能支持广泛的探索和发现,包括分支的3D和交互式可视化,经常测量的形态计量学以及与原始PubMed出版物的相互链接。 NeuroMorpho.Org与NIF版本1(NIFv1)的集成提供了在其他相关资源和神经科学的各个子域的背景下访问形态数据的机会,这为数据挖掘和知识发现打开了令人兴奋的新可能性。这种协调的结果是神经科学研究在概念和技术层面上的迅速强大的发展。

著录项

  • 来源
    《Neuroinformatics》 |2008年第3期|241-252|共12页
  • 作者单位

    Center for Neural Informatics Structure ampamp Plasticity and Molecular Neuroscience Department Krasnow Institute for Advanced Study George Mason University Fairfax VA USA;

    Center for Neural Informatics Structure ampamp Plasticity and Molecular Neuroscience Department Krasnow Institute for Advanced Study George Mason University Fairfax VA USA;

    Center for Neural Informatics Structure ampamp Plasticity and Molecular Neuroscience Department Krasnow Institute for Advanced Study George Mason University Fairfax VA USA;

    MITRE Corporation McLean VA USA;

    MITRE Corporation McLean VA USA;

    MITRE Corporation McLean VA USA;

    Center for Neural Informatics Structure ampamp Plasticity and Molecular Neuroscience Department Krasnow Institute for Advanced Study George Mason University Fairfax VA USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Neuronal morphology; Digital reconstruction; Data sharing; Neuroscience information framework; Axonal arbors; Dendritic trees;

    机译:神经元形态;数字重建;数据共享;神经科学信息框架;轴突乔木;树突树;

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