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Evaluation of methods for one-dimensional spatial analysis of two-dimensional patterns in mouse chimaeras

机译:小鼠嵌合体二维模式一维空间分析方法的评价

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摘要

The relative extent of cell mixing in tissues of mouse chimaeras or mosaics can be studied by comparing the distributions of the two cell populations in the tissues. However, the mean patch size is misleading because it is affected by both the extent of cell mixing and the relative contributions of the two cell populations. Previous work suggested that effects attributable to differences in tissue composition among chimaeras can be factored out either by correcting the mean patch size or by using the median patch size for the minority cell population and restricting the analysis to grossly unbalanced chimaeras. In the present study, computer simulations of two-dimensional mosaic arrays of black and white squares (representing cells) were used to simulate chimaeric tissues. Random arrays simulated tissues with extensive cell mixing, arrays of cell clumps (representing coherent clones) simulated less mixed tissues, and striped arrays simulated tissues with elongated but fragmented descendent clones. The computer simulations predicted that (i) the median patch length (minority cell population) and the corrected mean patch length would both distinguish between random and clumped patterns and (ii) differences in the variation of the composition of two perpendicular series of one-dimensional transects would distinguished between stripes and randomly orientated patches. Both predictions were confirmed by analysis of histological sections of the retinal pigment epithelium from fetal and adult mouse chimaeras. This study demonstrates that two types of non-random two-dimensional variegated patterns (clumps and stripes) can be identified in chimaeras without two-dimensional reconstruction of serial sections.
机译:小鼠嵌合体或镶嵌体组织中细胞混合的相对程度可以通过比较两种细胞在组织中的分布来研究。但是,平均贴片大小会引起误解,因为它受细胞混合程度和两个细胞群体相对贡献的影响。先前的工作表明,可以通过校正平均斑块大小或通过使用少数细胞群体的中值斑块大小并将分析限制在严重不平衡的凯马斑中来消除归因于嵌合体之间组织组成差异的影响。在本研究中,黑白正方形(代表细胞)的二维镶嵌阵列的计算机模拟被用来模拟嵌合组织。随机阵列模拟具有广泛细胞混合的组织,细胞团阵列(代表相干克隆)模拟较少混合的组织,而条纹阵列模拟具有细长但片段化的后代克隆的组织。计算机模拟预测(i)中值斑块长度(少数细胞群体)和校正后的平均斑块长度都将区分随机模式和成簇模式,并且(ii)一维两个垂直系列的成分变化的差异横断面将区分条纹和随机定向的斑块。通过分析来自胎儿和成年小鼠嵌合体的视网膜色素上皮的组织学切片,证实了这两个预测。这项研究表明,无需对连续切片进行二维重建,即可在嵌合体中鉴定出两种类型的非随机二维杂色图案(团块和条纹)。

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