Dept. of Prosthodontics/Dental Materials Science, Inst. of Odontology, Sahlgrenska Academy, University of Gothenburg, Sweden.
Nordic Institute of Dental Materials (NIOM), Oslo, Norway.
Dent Mater. 2022 Mar;38(3):508-516. doi: 10.1016/j.dental.2022.01.001. Epub 2022 Jan 19.
Particle generation from implant components caused by frictional wear affect the surrounding peri-implant tissues. The objective of this study was to evaluate the effect of combining implant and abutment materials on wear and particle release in a dynamical loading setup.
A customized dynamical loading machine was used to subject two implant materials (Titanium and Titanium- Zirconium alloy) paired with two different abutment materials (Titanium and Zirconia) to a cyclic loading set of 240.000 cycles (simulating 1 year of clinical use). The implant and abutment complex was immersed in corrosive liquid to collect particle debris and measure the release of corroded ions. Scanning electron microscopy was used to analyze signs of wear on the components after testing and evaluate the size and composition of particle debris.
Wear signs were evident in all material couplings. Particle debris was found on top, inside the implants, and on the abutment heads. The particle size ranged between 0.6 and 16.9 µm, with larger particles composed of Ti. Smaller-sized particles were found in the container liquid ranging from 0.253 to 1.7 µm compared to inside the implants ranging from 3.25 to 95.3 µm. Larger particles were found inside Tizr implants compared to Ti implants. Low levels of ions released due to corrosion were found when measuring content in surrounding liquid.
Particle generation is evident when subjecting dental implant and abutment couplings in a dynamic loading setup. Internally connected implants hinder the release of larger particles to surrounding container liquid.
摩擦磨损导致的种植体部件颗粒生成会影响周围的种植体组织。本研究旨在评估在动态加载装置中组合种植体和基台材料对磨损和颗粒释放的影响。
使用定制的动态加载机对两种种植体材料(钛和钛-锆合金)与两种不同基台材料(钛和氧化锆)进行了 240000 次循环(模拟临床使用 1 年)的循环加载试验。将种植体和基台组件浸入腐蚀性液体中,以收集颗粒碎片并测量腐蚀离子的释放量。扫描电子显微镜用于分析测试后组件的磨损迹象,并评估颗粒碎片的大小和组成。
所有材料组合都出现了磨损迹象。在种植体顶部、内部和基台头部都发现了颗粒碎片。颗粒尺寸范围在 0.6 至 16.9μm 之间,较大的颗粒由 Ti 组成。在容器液体中发现的较小尺寸的颗粒范围在 0.253 至 1.7μm 之间,而在种植体内部发现的颗粒尺寸范围在 3.25 至 95.3μm 之间。与 Ti 种植体相比,在 Tizr 种植体中发现了更大的颗粒。在测量周围液体中的含量时,发现由于腐蚀而释放的离子水平较低。
在动态加载装置中对牙科种植体和基台组合进行测试时,颗粒生成是明显的。内部连接的种植体阻碍了较大颗粒释放到周围容器液体中。