首页> 外文期刊>Anatomy and embryology >High-resolution episcopic microscopy: a rapid technique for high detailed 3D analysis of gene activity in the context of tissue architecture and morphology.
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High-resolution episcopic microscopy: a rapid technique for high detailed 3D analysis of gene activity in the context of tissue architecture and morphology.

机译:高分辨率镜检显微镜:在组织结构和形态学背景下对基因活性进行高详细3D分析的快速技术。

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摘要

We describe a new methodology for rapid 2D and 3D computer analysis and visualisation of gene expression and gene product pattern in the context of anatomy and tissue architecture. It is based on episcopic imaging of embryos and tissue samples, as they are physically sectioned, thereby producing inherently aligned digital image series and volume data sets, which immediately permit the generation of 3D computer representations. The technique uses resin as embedding medium, eosin for unspecific tissue staining, and colour reactions (beta-galactosidase/Xgal or BCIP/NBT) for specific labelling of gene activity and mRNA pattern. We tested the potential of the method for producing high-resolution volume data sets of adult human and porcine tissue samples and of specifically and unspecifically stained mouse, chick, quail, frog, and zebrafish embryos. The quality of the episcopic images resembles the quality of digital images of true histological sections with respect to resolution and contrast. Specifically labelled structures can be extracted using simple thresholding algorithms. Thus, the method is capable of quickly and precisely detecting molecular signals simultaneously with anatomical details and tissue architecture. It has no tissue restrictions and can be applied for analysis of human tissue samples as well as for analysis of all developmental stages of embryos of a wide variety of biomedically relevant species.
机译:我们描述了一种新的方法,可用于快速2D和3D计算机分析以及在解剖学和组织结构背景下的基因表达和基因产物模式的可视化。它是基于对胚胎和组织样品进行物理切片的镜射成像,从而对它们进行了物理切片,从而生成了固有对齐的数字图像系列和体积数据集,可立即生成3D计算机表示形式。该技术使用树脂作为包埋介质,曙红用于非特异性组织染色,颜色反应(β-半乳糖苷酶/ Xgal或BCIP / NBT)用于基因活性和mRNA模式的特异性标记。我们测试了该方法用于生成高分辨率的成年人类和猪组织样品以及特定和非特定染色的小鼠,鸡,鹌鹑,青蛙和斑马鱼胚胎的体积数据集的潜力。就分辨率和对比度而言,全景图像的质量类似于真实组织学切片的数字图像的质量。可以使用简单的阈值算法提取经过特殊标记的结构。因此,该方法能够在解剖学细节和组织构造的同时快速且精确地检测分子信号。它没有组织限制,可用于人体组织样品分析以及各种生物医学相关物种的胚胎所有发育阶段的分析。

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