A Scalable Cyberinfrastructure for Interactive Visualization of Terascale Microscopy Data.

A Venkat, C Christensen, A Gyulassy, B Summa, F Federer, A Angelucci, V Pascucci
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引用次数: 2

Abstract

The goal of the recently emerged field of connectomics is to generate a wiring diagram of the brain at different scales. To identify brain circuitry, neuroscientists use specialized microscopes to perform multichannel imaging of labeled neurons at a very high resolution. CLARITY tissue clearing allows imaging labeled circuits through entire tissue blocks, without the need for tissue sectioning and section-to-section alignment. Imaging the large and complex non-human primate brain with sufficient resolution to identify and disambiguate between axons, in particular, produces massive data, creating great computational challenges to the study of neural circuits. Researchers require novel software capabilities for compiling, stitching, and visualizing large imagery. In this work, we detail the image acquisition process and a hierarchical streaming platform, ViSUS, that enables interactive visualization of these massive multi-volume datasets using a standard desktop computer. The ViSUS visualization framework has previously been shown to be suitable for 3D combustion simulation, climate simulation and visualization of large scale panoramic images. The platform is organized around a hierarchical cache oblivious data layout, called the IDX file format, which enables interactive visualization and exploration in ViSUS, scaling to the largest 3D images. In this paper we showcase the VISUS framework used in an interactive setting with the microscopy data.

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一个可扩展的网络基础设施,用于Terascale显微镜数据的交互式可视化。
最近出现的连接组学领域的目标是生成不同尺度的大脑接线图。为了识别大脑回路,神经科学家使用专门的显微镜以非常高的分辨率对标记的神经元进行多通道成像。CLARITY组织清除允许通过整个组织块成像标记电路,无需组织切片和切片对切片对齐。尤其是对大而复杂的非人类灵长类动物大脑进行成像,以足够的分辨率来识别和消除轴突之间的歧异,会产生大量数据,给神经回路的研究带来巨大的计算挑战。研究人员需要新的软件功能来编译、拼接和可视化大型图像。在这项工作中,我们详细介绍了图像采集过程和分层流媒体平台ViSUS,该平台可以使用标准台式计算机对这些大量多卷数据集进行交互式可视化。ViSUS可视化框架已被证明适用于三维燃烧模拟、气候模拟和大尺度全景图像的可视化。该平台围绕分层缓存无关数据布局进行组织,称为IDX文件格式,可以在ViSUS中进行交互式可视化和探索,缩放到最大的3D图像。在本文中,我们展示了VISUS框架在显微镜数据的交互式设置中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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