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Platform for Quantitative Evaluation of Spatial Intratumoral Heterogeneity in Multiplexed Fluorescence Images

机译:多路复用荧光图像中空间肿瘤内异质性定量评价的平台

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We introduce THRIVE (Tumor Heterogeneity Research Interactive Visualization Environment), an open-source tool developed to assist cancer researchers in interactive hypothesis testing. The focus of this tool is to quantify spatial intratumoral heterogeneity (ITH), and the interactions between different cell phenotypes and noncellular constituents. Specifically, we foresee applications in phenotyping cells within tumor microenvironments, recognizing tumor boundaries, identifying degrees of immune infiltration and epithelial/stromal separation, and identification of heterotypic signaling networks underlying microdomains. The THRIVE platform provides an integrated workflow for analyzing whole-slide immunofluorescence images and tissue microarrays, including algorithms for segmentation, quantification, and heterogeneity analysis. THRIVE promotes flexible deployment, a maintainable code base using open-source libraries, and an extensible framework for customizing algorithms with ease. THRIVE was designed with highly multiplexed immunofluorescence images in mind, and, by providing a platform to efficiently analyze high-dimensional immunofluorescence signals, we hope to advance these data toward mainstream adoption in cancer research. (C) 2017 AACR.
机译:我们介绍茁壮成长(肿瘤异质性研究互动可视化环境),这是一种开发的开源工具,用于协助癌症研究人员进行交互式假设检验。该工具的重点是量化空间型肿瘤内异质度(ITH),以及不同细胞表型和非细胞成分之间的相互作用。具体地,我们预见到肿瘤微环境中的表型细胞中的应用,识别肿瘤界限,鉴定免疫渗透程度和上皮/基质分离,以及依赖于微氮瘤的异质信号传导网络。繁殖平台提供了一种用于分析整个载玻片免疫荧光图像和组织微阵列的集成工作流程,包括用于分割,定量和异质性分析的算法。茁壮成长促进灵活的部署,使用开源库和可轻松定制算法的可扩展框架。茁壮成长,设计了高度复用的免疫荧光图像,并通过提供平台来有效地分析高维免疫荧光信号,我们希望将这些数据推进癌症研究中的主流采用。 (c)2017年AACR。

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