Joos U, Wiesmann H P, Szuwart T, Meyer U
Clinic for Cranio-, Maxillofacial Surgery, University of Münster, Germany.
Int J Oral Maxillofac Surg. 2006 Sep;35(9):783-90. doi: 10.1016/j.ijom.2006.03.013. Epub 2006 May 11.
Osseointegration of implants is crucial for the long-term success of oral implants. Mineralization of the bone's extracellular matrix as the ultimate step of a mature bone formation is closely related to implant osseointegration. Osteogenesis at oral implants is a complex process, driven by cellular and acellular phenomena. The biological process of the maintenance and emergence of minerals in the vicinity of oral implants is influenced to a great extent by biophysical parameters. Implant-related structural and functional factors, as well as patient-specific factors, govern the features of osteogenesis. To understand the influence of these factors in peri-implant bone mineralization, it is important to consider the basic biological processes. Biological and crystallographic investigations have to be applied to evaluate mineralization at implant surfaces at the different hierarchical levels of analysis. This review gives insight into the complex theme of mineral formation around implants. Special focus is given to new developments in implant design and loading protocols aimed at accelerating osseointegration of dental implants.
种植体的骨结合对于口腔种植体的长期成功至关重要。作为成熟骨形成的最终步骤,骨细胞外基质的矿化与种植体骨结合密切相关。口腔种植体的骨生成是一个复杂的过程,由细胞和非细胞现象驱动。口腔种植体周围矿物质维持和出现的生物学过程在很大程度上受生物物理参数影响。与种植体相关的结构和功能因素以及患者特异性因素决定了骨生成的特征。为了解这些因素对种植体周围骨矿化的影响,考虑基本生物学过程很重要。必须应用生物学和晶体学研究来评估不同分析层次上种植体表面的矿化情况。本综述深入探讨了种植体周围矿物质形成这一复杂主题。特别关注旨在加速牙种植体骨结合的种植体设计和加载方案的新进展。