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同步加速器X射线相衬显微断层扫描在生物形态学和生物材料科学中的成像应用。I. 该技术的一般方面及其在毫米级节肢动物结构分析中的优势。

Imaging applications of synchrotron X-ray phase-contrast microtomography in biological morphology and biomaterials science. I. General aspects of the technique and its advantages in the analysis of millimetre-sized arthropod structure.

作者信息

Betz Oliver, Wegst Ulrike, Weide Daniela, Heethoff Michael, Helfen Lukas, Lee Wah-Keat, Cloetens Peter

机构信息

Zoologisches Institut der Universität, Abteilung Evolutionsbiologie der Invertebraten, Auf der Morgenstelle 28E, D-72076 Tübingen, Germany.

出版信息

J Microsc. 2007 Jul;227(Pt 1):51-71. doi: 10.1111/j.1365-2818.2007.01785.x.

Abstract

Synchrotron-generated X-rays provide scientists with a multitude of investigative techniques well suited for the analysis of the composition and structure of all types of materials and specimens. Here, we describe the properties of synchrotron-generated X-rays and the advantages that they provide for qualitative morphological research of millimetre-sized biological organisms and biomaterials. Case studies of the anatomy of insect heads, of whole microarthropods and of the three-dimensional reconstruction of the cuticular tendons of jumping beetles, all performed at the beamline ID19 of the European Synchrotron Radiation Facility (ESRF), are presented to illustrate the techniques of phase-contrast tomography available for anatomical and structural investigations. Various sample preparation techniques are described and compared and experimental settings that we have found to be particularly successful are given. On comparing the strengths and weaknesses of the technique with traditional histological thin sectioning, we conclude that synchrotron radiation microtomography has a great potential in biological microanatomy.

摘要

同步加速器产生的X射线为科学家提供了多种研究技术,非常适合用于分析各类材料和标本的成分与结构。在此,我们描述同步加速器产生的X射线的特性,以及它们为毫米级生物有机体和生物材料的定性形态学研究带来的优势。本文展示了在欧洲同步辐射装置(ESRF)的ID19光束线上对昆虫头部解剖结构、整个微型节肢动物以及跳甲表皮肌腱的三维重建进行的案例研究,以说明可用于解剖学和结构研究的相衬断层扫描技术。文中描述并比较了各种样品制备技术,并给出了我们发现特别成功的实验设置。通过比较该技术与传统组织学薄切片技术的优缺点,我们得出结论:同步辐射显微断层扫描在生物显微解剖学方面具有巨大潜力。

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