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Interactive analysis for large volume data from fluorescence microscopy at cellular precision

机译:在蜂窝精度下荧光显微镜的大容量数据的交互式分析

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The main objective for understanding fluorescence microscopy data is to investigate and evaluate the fluorescent signal intensity distributions as well as their spatial relationships across multiple channels. The quantitative analysis of 3D fluorescence microscopy data needs interactive tools for researchers to select and focus on relevant biological structures. We developed an interactive tool based on volume visualization techniques and GPU computing for streamlining rapid data analysis. Our main contribution is the implementation of common data quantification functions on streamed volumes, providing interactive analyses on large data without lengthy preprocessing. Data segmentation and quantification are coupled with brushing and executed at an interactive speed. A large volume is partitioned into data bricks, and only user-selected structures are analyzed to constrain the computational load. We designed a framework to assemble a sequence of GPU programs to handle brick borders and stitch analysis results. Our tool was developed in collaboration with domain experts and has been used to identify cell types. We demonstrate a workflow to analyze cells in vestibular epithelia of transgenic mice. (c) 2021 Elsevier Ltd. All rights reserved.
机译:用于了解荧光显微镜数据的主要目标是研究和评估荧光信号强度分布以及跨多个通道的空间关系。 3D荧光显微镜数据的定量分析需要研究人员的互动工具,以选择和关注相关的生物结构。我们开发了一种基于卷可视化技术和GPU计算的交互式工具,用于简化快速数据分析。我们的主要贡献是在流式卷上实施常见的数据量化功能,在大数据上提供交互式分析而无需冗长的预处理。数据分段和量化与刷涂和以交互式速度执行。大卷被分配到数据砖中,并且仅分析了用户所选的结构以限制计算负载。我们设计了一个框架,可以组装一系列GPU程序来处理砖边和针脚分析结果。我们的工具是与域专家合作开发的,并已用于识别细胞类型。我们展示了一种工作流程,用于分析转基因小鼠的前庭上皮细胞。 (c)2021 elestvier有限公司保留所有权利。

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