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利用微计算机断层扫描技术对 Quedius beesoni Cameron 的微观结构进行 3D 可视化。

3D visualization of the microstructure of Quedius beesoni Cameron using micro-CT.

机构信息

Beijing Synchrotron Radiation Facility, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Anal Bioanal Chem. 2010 Jul;397(6):2143-8. doi: 10.1007/s00216-010-3696-6. Epub 2010 Apr 30.

Abstract

The investigation of the internal morphology of insects is usually performed using classical microtomy yielding optical micrographs of stained thin sections. The achievement of high-quality cross sections for microtomy is time-consuming and the risk of damaging sections is unavoidable. Moreover, the approach is impractical, in particular when quick acquisition of 3D structural information is required. Recently, X-ray computed microtomography (micro-CT) with a high spatial resolution was considered as a potential tool for the morphological classification of insects. We used micro-CT to investigate Quedius beesoni Cameron at the cellular length scale. This method provides a new powerful and nondestructive approach to obtain 3D structural information on the biological organization of insects. The preliminary images presented in this contribution clearly reveal the endoskeleton and the muscles of the head and the thorax with a full 3D structure. We also reconstructed the 3D structure of the brain of Quedius beesoni Cameron, and this is the first reconstruction in Staphylinidae, which will be a great advancement for morphological and phylogenic research. We claim that both the spatial resolution and the contrast characteristic of micro-CT imaging may fulfill the requirements necessary for zoological insect morphology and phylogeny, in particular, when a classification of a rare and unique insect specimen is required.

摘要

昆虫内部形态的研究通常采用经典的切片方法,通过对染色的薄片进行光学显微镜观察。这种方法获得高质量切片的过程既耗时,又不可避免地存在切片受损的风险。此外,当需要快速获取 3D 结构信息时,这种方法并不实用。最近,具有高空间分辨率的 X 射线计算机微断层扫描(micro-CT)被认为是昆虫形态分类的一种潜在工具。我们使用 micro-CT 对 Quedius beesoni Cameron 进行了细胞尺度的研究。这种方法为获取昆虫生物学组织的 3D 结构信息提供了一种新的强大的非破坏性方法。本文中呈现的初步图像清晰地显示了头部和胸部的内骨骼和肌肉的完整 3D 结构。我们还重建了 Quedius beesoni Cameron 的大脑 3D 结构,这是在鞘翅目昆虫中首次进行的重建,这将是形态学和系统发育研究的一大进步。我们认为,micro-CT 成像的空间分辨率和对比度特性可以满足动物昆虫形态学和系统发育学的要求,特别是在需要对稀有和独特的昆虫标本进行分类时。

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