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The Use of ESEM-EDX as an Innovative Tool to Analyze the Mineral Structure of Peri-Implant Human Bone

机译:ESEM-EDX作为创新工具来分析种植体周围人骨的矿物质结构

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摘要

This study aimed to investigate the mineralization and chemical composition of the bone–implant interface and peri-implant tissues on human histological samples using an environmental scanning electron microscope as well as energy-dispersive x-ray spectroscopy (ESEM-EDX) as an innovative method. Eight unloaded implants with marginal bone tissue were retrieved after four months from eight patients and were histologically processed and analyzed. Histological samples were observed under optical microscopy (OM) to identify the microarchitecture of the sample and bone morphology. Then, all samples were observed under ESEM-EDX from the coronal to the most apical portion of the implant at 500x magnification. A region of interest with bone tissue of size 750 × 500 microns was selected to correspond to the first coronal and the last apical thread (ROI). EDX microanalysis was used to assess the elemental composition of the bone tissue along the thread interface and the ROI. Atomic percentages of Ca, P, N, and Ti, and the Ca/N, P/N and Ca/P ratios were measured in the ROI. Four major bone mineralization areas were identified based on the different chemical composition and ratios of the ROI. Area 1: A well-defined area with low Ca/N, P/N, and Ca/P was identified as low-density bone. Area 2: A defined area with higher Ca/N, P/N, and Ca/P, identified as new bone tissue, or bone remodeling areas. Area 3: A well-defined area with high Ca/N, /P/N, and Ca/P ratios, identified as bone tissue or bone chips. Area 4: An area with high Ca/N, P/N, and Ca/P ratios, which was identified as mature old cortical bone. Bone Area 2 was the most represented area along the bone–implant interface, while Bone Area 4 was identified only at sites approximately 1.5 mm from the interface. All areas were identified around implant biopsies, creating a mosaic-shaped distribution with well-defined borders. ESEM-EDX in combination with OM allowed to perform a microchemical analysis and offered new important information on the organic and inorganic content of the bone tissue around implants.
机译:本研究旨在利用环境扫描电子显微镜和能量色散X射线光谱法(ESEM-EDX)研究人类组织学样品上骨-植入物界面和植入物周围组织的矿化和化学成分。四个月后,从八名患者中取出八颗带有边缘骨组织的假体,并进行了组织学处理和分析。在光学显微镜(OM)下观察组织学样品,以鉴定样品的微结构和骨形态。然后,在ESEM-EDX下从植入物的冠状到最顶端部分观察所有样品,放大倍数为500倍。选择骨组织大小为750×500微米的感兴趣区域,以对应于第一个冠状和最后一个根尖螺纹(ROI)。 EDX显微分析用于评估沿螺纹界面和ROI的骨组织的元素组成。在ROI中测量了Ca,P,N和Ti的原子百分比以及Ca / N,P / N和Ca / P比。根据不同的化学成分和ROI的比例,确定了四个主要的骨矿化区域。区域1:Ca / N,P / N和Ca / P低的界限分明的区域被确定为低密度骨骼。区域2:具有较高Ca / N,P / N和Ca / P的定义区域,被识别为新的骨组织或骨重塑区域。区域3:具有高Ca / N,/ P / N和Ca / P比的明确定义的区域,被识别为骨组织或碎骨。区域4:具有高Ca / N,P / N和Ca / P比的区域,被确定为成熟的旧皮质骨。骨区域2是沿骨骼-植入物界面的最大代表区域,而骨区域4仅在距界面约1.5毫米的位置识别。在植入物活组织检查周围确定了所有区域,从而形成了边界清晰的镶嵌形状分布。 ESEM-EDX与OM结合使用可以进行微量化学分析,并提供有关植入物周围骨组织有机和无机含量的重要信息。

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