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Injectable bone cements for Vertebroplasty studied in sheep vertebrae with electron microscopy

机译:椎体中的可注射骨水泥在绵羊椎体与电子显微镜中研究

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Vertebral compression fractures were simulated by making a hole into sheep vertebrae and by injecting a stabilizing material. The injectable bio-ceramic Xeraspine~(TM) was evaluated together with a commercially available PMMA (Vertebroplastic~(TM)) as the reference material. The Vertebrae were harvested after 7 days and prepared for microscopy. The samples were deposited with gold on the surface and thereafter subjected to SEM and EDX analysis. It was found that the Xeraspine-bone interface was composed of a mixture of elements. The Vertebroplastic implant was embedded in a carbon containing tissue, likely a soft tissue capsule. The Xeraspine sample was subjected to high resolution analysis in the TEM combined with EDX measurements. The TEM sample was prepared with a novel technique for preparation of the tissue-material interface (FIB). In the TEM analysis it was found that the interface region consists of ZrO_2 together with a mixture possibly consisting of katoite and apatite formed during setting and/or originating from the bone-apatite.
机译:通过将孔进入绵羊椎骨并注入稳定材料来模拟椎体压缩骨折。可注射生物陶瓷Xeraspine〜(Tm)与市售的PMMA(椎体〜(TM))一起评价作为参考材料。在7天后收获椎骨并为显微镜制备。将样品沉积在表面上的金,然后进行SEM和EDX分析。发现Xeraspine-骨界面由元素的混合物组成。椎骨植入物嵌入含碳组织中,可能是软组织胶囊。 Xeraspine样品在TEM中进行高分辨率分析,结合EDX测量。用新型技术制备TEM样品,用于制备组织材料界面(FIB)。在TEM分析中,发现界面区域由ZrO_2组成,与可能由在设置和/或源自骨磷灰石期间形成的katoite和磷灰石组成的混合物。

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