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Digital dissection of the model organism Xenopus laevis using contrast‐enhanced computed tomography

机译:使用对比增强计算机断层扫描技术对模型生物非洲爪蟾进行数字解剖

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摘要

The African clawed frog, Xenopus laevis, is one of the most widely used model organisms in biological research. However, the most recent anatomical description of X. laevis was produced nearly a century ago. Compared with other anurans, pipid frogs – including X. laevis – exhibit numerous unusual morphological features; thus, anatomical descriptions of more ‘typical’ frogs do not detail many aspects of X. laevis skeletal and soft‐tissue morphology. The relatively new method of using iodine‐based agents to stain soft tissues prior to high‐resolution X‐ray imaging has several advantages over gross dissection, such as enabling dissection of very small and fragile specimens, and preserving the three‐dimensional topology of anatomical structures. Here, we use contrast‐enhanced computed tomography to produce a high‐resolution three‐dimensional digital dissection of a post‐metamorphic X. laevis to successfully visualize: skeletal and muscular anatomy; the nervous, respiratory, digestive, excretory and reproductive systems; and the major sense organs. Our digital dissection updates and supplements previous anatomical descriptions of this key model organism, and we present the three‐dimensional data as interactive portable document format (PDF) files that are easily accessible and freely available for research and educational purposes. The data presented here hold enormous potential for applications beyond descriptive purposes, particularly for biological researchers using this taxon as a model organism, comparative anatomy and biomechanical modelling.
机译:非洲爪蛙Xenopus laevis是生物学研究中使用最广泛的模型生物之一。然而,近来X.laevis的最新解剖学描述是在近一个世纪前产生的。与其他无脊椎动物相比,包括X.laevis在内的小青蛙表现出许多不同寻常的形态特征;因此,对更多``典型''青蛙的解剖学描述并未详细说明X.laevis的骨骼和软组织形态。在高分辨率X射线成像之前使用基于碘的试剂对软组织进行染色的相对较新的方法相对于大体解剖具有多个优势,例如能够解剖非常小的和易碎的标本,并保留解剖结构的三维拓扑结构。在这里,我们使用对比增强的计算机断层扫描技术来生成后变质X的高分辨率三维数字解剖.laevis可以成功地进行可视化:骨骼和肌肉解剖;神经,呼吸,消化,排泄和生殖系统;和主要的感觉器官。我们的数字解剖技术更新并补充了该关键模型生物的先前解剖学描述,并且我们将三维数据显示为交互式便携式文档格式(PDF)文件,该文件易于访问并且可以免费用于研究和教育目的。本文提供的数据具有超出描述目的的巨大应用潜力,特别是对于使用此分类单元作为模型生物,比较解剖学和生物力学模型的生物学研究人员而言。

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