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Maxillary sinus grafting with a nano-structured biomaterial: preliminary clinical and histological results.

机译:上颌窦移植与纳米结构的生物材料:初步的临床和组织学结果。

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摘要

BACKGROUND: In this study the potential of a new and entirely synthetic, nano-structured hydroxyapatite-based biomaterial for sinus floor augmentation is evaluated. METHODS: 20 sinus floor elevations were carried out in a total of 20 patients. After a healing period of 6 months, in 10 cases cylinder-shaped bone biopsies were taken from the augmented maxillary region using trephine burs. RESULTS: The healing period progressed without any complications. General and specific histological analysis of the bone biopsies showed a high osteoclast activity at the margin of the biomaterial which was well integrated into the newly formed bone. CONCLUSION: This study demonstrates that new trabecular bone is formed after grafting with the nanocrystalline bone substitute after 6 months. Ongoing histomorphological studies are necessary to quantify the biomaterial-bone ratio and the exact amount of newly built bone in the augmented cavity after 6 months.
机译:背景:在这项研究中,评估了一种新型的,完全合成的,基于纳米结构的羟基磷灰石基生物材料用于鼻窦底增强的潜力。方法:共20例患者进行了20次窦底抬高。在6个月的愈合期后,在10例病例中,使用环钻针从增大的上颌骨区域进行圆柱状骨活检。结果:愈合期无任何并发症。骨骼活组织检查的一般和特定组织学分析显示,在生物材料的边缘具有很高的破骨细胞活性,该材料很好地整合到了新形成的骨骼中。结论:这项研究表明,在6个月后用纳米晶骨替代物移植后形成了新的小梁骨。正在进行的组织形态学研究对于量化生物材料的骨比率和6个月后增强腔中新生成的骨骼的确切数量非常必要。

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