首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >Reduction of Tribocorrosion Products When Using the Platform-Switching Concept
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Reduction of Tribocorrosion Products When Using the Platform-Switching Concept

机译:使用平台开关概念时减少了Tribocorlion产品

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The reduced marginal bone loss observed when using the platform-switching concept may be the result of reduced amounts of tribocorrosion products released to the peri-implant tissues. Therefore, the purpose of this study was to compare the tribocorrosion product release from various platform-matched and platform-switched implant-abutment couplings under cyclic loading. Forty-eight titanium implants were coupled with pure titanium, gold alloy, cobalt-chrome alloy, and zirconia abutments forming either platform-switched or platform-matched groups (n = 6). The specimens were subjected to cyclic occlusal forces in a wet acidic environment for 24 h followed by static aqueous immersion for 6 d. The amount of metal ions released was measured using inductively coupled plasma mass spectrometry. Microscopic evaluations were performed pre- and postimmersion under scanning electron microscope (SEM) equipped with energy-dispersive spectroscopy X-ray for corrosion assessment at the interface and wear particle characterization. All platform-switched groups showed less metal ion release compared with their platform-matched counterparts within each abutment material group (P 0.001). Implants connected to platform-matched cobalt-chrome abutments demonstrated the highest total mean metal ion release (218 ppb), while the least total mean ion release (11 ppb) was observed in the implants connected to platform-switched titanium abutments (P = 0.001). Titanium was released from all test groups, with its highest mean release (108 ppb) observed in the implants connected to platform-matched gold abutments (P 0.001). SEM images showed surface tribocorrosion features such as pitting and bands of fretting scars. Wear particles were mostly titanium, ranging from submicron to 48 mu m in length. The platform-matched groups demonstrated a higher amount of metal ion release and more surface damage. These findings highlight the positive effect of the platform-switching concept in the reduction of tribocorrosion products released from dental implants, which consequently may minimize the adverse tissue reactions that lead to peri-implant bone loss.
机译:使用平台切换概念时观察到的边际骨质损失降低可能是释放到PERI-植入组织的Tribocorlion产物的结果。因此,本研究的目的是将Tribocorlion产品释放从各种平台匹配和平台切换的植入式邻接联轴器进行比较。四十八个钛植入物与纯钛,金合金,钴 - 铬合金和氧化锆托管相结合,形成平台切换或平台匹配的基团(n = 6)。将试样在湿酸性环境中进行循环闭塞力,持续24小时,然后静态浸渍6d。使用电感耦合等离子体质谱法测量释放的金属离子的量。在扫描电子显微镜(SEM)下进行微观评估,并在配备有能量分散光谱X射线的扫描电子显微镜(SEM)下进行用于在界面和磨损粒子表征的腐蚀评估。与每个邻接材料组内的平台匹配的对应物相比,所有平台切换组均显示较少的金属离子释放(P <0.001)。连接到平台匹配的钴 - 铬基台的植入物证明了总平均金属离子释放(218ppb),而在连接到平台开关钛基台的植入物中观察到最小的平均离子释放(11ppb)(P& = 0.001)。钛从所有试验组释放,在与平台匹配的金支座的植入物中观察到其最高平均释放(108ppb)(P <0.001)。 SEM图像显示表面染色腐蚀功能,例如凹陷疤痕的凹槽和带。磨损颗粒主要是钛,从亚微米的范围为48μm的长度。平台匹配的组呈现较高量的金属离子释放和更多的表面损坏。这些发现突出了平台切换概念在从牙科植入物中释放的Tribocorlion产品的减少中的积极效果,从而可以最小化导致Peri植入骨质损失的不良组织反应。

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