首页> 外文会议>Conference on Developments in Ⅹ-Ray Tomography Ⅲ, Aug 2-3, 2001, San Diego, USA >Non-destructive three-dimensional evaluation of biocompatible materials by microtomography using synchrotron radiation
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Non-destructive three-dimensional evaluation of biocompatible materials by microtomography using synchrotron radiation

机译:使用同步加速器辐射的显微照相术对生物相容性材料的无损三维评估

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Microtomography based on synchrotron radiation sources is a unique technique for the 3D characterization of different materials with a spatial resolution down to about 1μm. The interface between implant materials (metals, ceramics and polymers) and biological matter is non-destructively accessible, i.e. without preparation artifacts. Since the materials exhibit different X-ray absorption, it can become impossible to visualize implant material and tissue, simultaneously. Here, we show that coating of polymer implants, which are invisible in bone tissue, does not only improve the interfacial properties but also allow the imaging of the interface in detail. Titanium implants, on the other hand, absorb the X-rays stronger than bone tissue. The difference, however, is small enough to quantify the bone formation near interface. Another advantage of microtomography with respect to classical histology is the capability to examine samples in a hydrated state. We demonstrate that ceramic hollow spheres can be imaged before sintering and fibroblasts marked by OsO_4 are visible on polymer textiles. Consequently, scaffolds of different materials designed for tissue engineering and implant coatings can be optimized on the basis of the tomograms.
机译:基于同步加速器辐射源的显微断层照相术是一种独特的技术,可用于对各种材料进行3D表征,其空间分辨率低至约1μm。植入物材料(金属,陶瓷和聚合物)与生物物质之间的界面是不可破坏的,即没有制备伪影。由于材料表现出不同的X射线吸收,因此无法同时可视化植入物材料和组织。在这里,我们表明在骨骼组织中不可见的聚合物植入物涂层不仅改善了界面特性,而且还允许对界面进行详细成像。另一方面,钛植入物比骨骼组织吸收更强的X射线。但是,差异很小,足以量化界面附近的骨形成。显微照相术相对于经典组织学的另一个优势是能够检查水合状态的样品。我们证明陶瓷空心球可以在烧结之前成像,并且在聚合物纺织品上可以看到以OsO_4标记的成纤维细胞。因此,可以根据断层图优化用于组织工程和植入物涂层的不同材料的支架。

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