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AUTOMATED 3-D QUANTIFICATION OF BRAIN TISSUE AT THE CELLULAR SCALE FROM MULTI-PARAMETER CONFOCAL MICROSCOPY IMAGES

机译:从多参数共聚焦显微镜图像中自动三维脑组织脑组织定量

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Brain tissue is the most complex tissue in the mammalian anatomy. It is structurally complex, containing diverse cell types and vasculature with complex spatial relationships. It is also complex in terms of molecular constituents, and their relationship to the structural constituents. There is a need for technologies to map normal and injured brain tissue and compute appropriate quantitative measurements in support of a large number of investigations. We present a systematic methodology named FARSIGHT (fluorescence association rules for image-based insight), combining multi-parameter immuno-histochemical labeling, three-dimensional confocal microscopy, linear unmixing, segmentation, and associative morphometry to map and quantify diverse aspects of brain tissue. In addition to morphometric measurements of individual structures from individual imaging channels, we propose the use of distance maps, distance-weighted integrals, and distributions as an efficient basis for computing a versatile set of such associative measurements. These features enable classification of all the major cell types, and computation of their inter-relationships.
机译:脑组织是哺乳动物解剖学中最复杂的组织。它在结构上复杂,含有不同的细胞类型和脉管系统,具有复杂的空间关系。在分子成分方面也复杂,以及它们与结构成分的关系。需要映射正常和受伤的脑组织的技术,并计算适当的定量测量以支持大量的调查。我们提出了一个名为Farsight的系统方法(基于图像的洞察力的荧光协会规则),组合多参数免疫组织化学标记,三维共聚焦显微镜,线性解密,分割和关联形态学来映射和量化脑组织的不同方面。除了来自各个成像通道的各个结构的形态测量之外,我们提出了使用距离图,远程加权积分以及分布作为计算这种关联测量的多功能集的有效依据。这些功能使所有主要细胞类型的分类,以及它们相互关系的计算。

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