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Visual Systems for Interactive Exploration and Mining of Large-Scale Neuroimaging Data Archives

机译:可视化系统用于交互式探索和挖掘大型神经影像数据档案

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摘要

While technological advancements in neuroimaging scanner engineering have improved the efficiency of data acquisition, electronic data capture methods will likewise significantly expedite the populating of large-scale neuroimaging databases. As they do and these archives grow in size, a particular challenge lies in examining and interacting with the information that these resources contain through the development of compelling, user-driven approaches for data exploration and mining. In this article, we introduce the informatics visualization for neuroimaging (INVIZIAN) framework for the graphical rendering of, and dynamic interaction with the contents of large-scale neuroimaging data sets. We describe the rationale behind INVIZIAN, detail its development, and demonstrate its usage in examining a collection of over 900 T1-anatomical magnetic resonance imaging (MRI) image volumes from across a diverse set of clinical neuroimaging studies drawn from a leading neuroimaging database. Using a collection of cortical surface metrics and means for examining brain similarity, INVIZIAN graphically displays brain surfaces as points in a coordinate space and enables classification of clusters of neuroanatomically similar MRI images and data mining. As an initial step toward addressing the need for such user-friendly tools, INVIZIAN provides a highly unique means to interact with large quantities of electronic brain imaging archives in ways suitable for hypothesis generation and data mining.
机译:尽管神经影像扫描仪工程技术的进步提高了数据采集的效率,但电子数据捕获方法将同样显着加快大规模神经影像数据库的普及。随着它们的发展以及这些档案的规模不断扩大,通过开发引人注目的,用户驱动的数据探索和挖掘方法,检查和与这些资源包含的信息进行交互是一个特殊的挑战。在本文中,我们介绍了用于神经影像的信息学可视化(INVIZIAN)框架,用于大规模神经影像数据集的图形呈现以及与内容的动态交互。我们描述了INVIZIAN背后的基本原理,详细介绍了它的发展,并展示了其在检查来自领先的神经影像数据库的各种临床神经影像研究中收集的900多个T1解剖磁共振成像(MRI)图像量的集合中的用途。通过收集皮质表面度量和检查大脑相似性的手段,INVIZIAN以图形方式将大脑表面显示为坐标空间中的点,并能够对神经解剖学相似的MRI图像和数据挖掘进行分类。作为满足此类用户友好工具需求的第一步,INVIZIAN提供了一种高度独特的方法,可以采用适用于假设生成和数据挖掘的方式与大量电子大脑成像档案进行交互。

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