首页> 外文期刊>Journal of Anatomy >Computer-generated three-dimensional reconstructions of serially sectioned mouse embryos.
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Computer-generated three-dimensional reconstructions of serially sectioned mouse embryos.

机译:连续切片的小鼠胚胎的计算机生成的三维重建。

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We have been involved with a group of computer scientists and anatomists in the development of computer-based methodologies that not only combine the advantages of scanning electron microscopy and conventional histology, but provide the additional dimension of tissue recognition. The latter is achieved by the appropriate labelling of tissues and structures by delineation or 'painting'. Individually segmented anatomically defined tissues can be highlighted in a particular colour and viewed either in isolation or in combination with other appropriately labelled tissues and organs. Tissues can be shown in any orientation either as a transparent overlay on computer-generated histological sections or as 3-D images without the histological background. An additional feature of the system is that computer graphics technology combined with 3-D glasses now also allows the viewer to see the object under analysis in stereo. This facility has been found to be particularly helpful in drawing attention to topological relationships that had not previously been readily noted. As the mouse is now the mammalian model of choice in many areas of developmental research, it is of critical importance that a basic level of skill is available in the research community in the interpretation of serially sectioned material, for example, for the rapidly expanding field in which gene expression studies play a significant role. It is equally important that there is an understanding of the dynamic changes that occur in relation to the differentiation of the various organ systems seen in these early stages of development. What we emphasise here is the additional information that it is possible to gain from the use of this tool which, in our view, could not readily have been gained from the analysis of scanning electron micrographs or by studying conventional serial histological sections of similar stages of mouse embryonic development. The methodology has been developed as part of a large project to prepare a database of mouse developmental anatomy covering all stages from fertilisation to birth in order to allow the accurate spatial mapping of gene expression and cell lineage data onto the digital Atlas of normal mouse development. In this paper we show how this digital anatomical Atlas also represents a valuable teaching aid and research tool in anatomy.
机译:我们已经与一群计算机科学家和解剖学家合作开发了基于计算机的方法,这些方法不仅结合了扫描电子显微镜和常规组织学的优点,而且还提供了组织识别的附加维度。后者是通过勾画或“绘画”适当标记组织和结构来实现的。单独分割的解剖学定义的组织可以以特定的颜色突出显示,并且可以单独查看或与其他适当标记的组织和器官结合使用。组织可以以任何方向显示为计算机生成的组织学切片上的透明覆盖物,也可以显示为没有组织学背景的3-D图像。该系统的另一个功能是,结合了3-D眼镜的计算机图形技术现在还可以使观看者以立体方式查看正在分析的对象。已经发现,此功能在吸引人们注意以前从未发现过的拓扑关系方面特别有用。由于鼠标现在已成为许多发展研究领域中首选的哺乳动物模型,因此至关重要的是,在研究领域中掌握基本技能以解释连续切片的材料(例如,对于迅速扩展的领域)其中基因表达研究起着重要作用。同样重要的是,要了解在发育的早期阶段与各种器官系统的分化有关的动态变化。我们在此强调的是使用此工具可能获得的其他信息,我们认为,通过扫描电子显微照片的分析或研究相似阶段的常规连续组织学切片无法轻易获得这些信息。小鼠胚胎发育。该方法已作为大型项目的一部分而开发,该项目准备了一个小鼠发育解剖学数据库,涵盖了从受精到出生的所有阶段,以便将基因表达和细胞谱系数据准确地空间映射到正常小鼠发育的数字地图集上。在本文中,我们将展示此数字解剖图集如何同时代表解剖学中的宝贵教具和研究工具。

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