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Determination of fluid leakages in the different screw-retained implant-abutment connections in a mechanical artificial mouth

机译:确定机械人工口中不同螺钉固位种植体 - 基台连接处的泄漏液

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摘要

This study shows the potential risk of microfiltration between two different types of implant-abutment connections screwed at 45 Ncm: external and internal. For the first time the use of a mechanical artificial mouth is used with the values (compression and torsion loads with a frequency of 2 Hz) of the human chewing. The mechanical tests were performed with an artificial saliva at 37 degrees C. The microgap in the connection was measured by an Image Analysis software incorporated in a high resolution scanning electron microscopy. Implant connections were filled with methylene blue by using self-adjustable precision pipettes and the quantity of leakage was determined by high sensitivity spectometry. We showed that the internal connection has lower microgaps compared to the external ones and these microgaps increased with the number of mechanical cycles. The leakage of methylene blue was higher when the external connection was performed. Microgaps and the influence of the mechanical loads are very important for the long-term behavior avoiding the bacteria colonization in the dental implants. These aspects should be known by the implantologists.
机译:这项研究表明,在两种不同类型的以45 Ncm螺钉拧紧的种植体-基台连接之间可能发生微滤的潜在风险:外部和内部。第一次使用人工机械嘴与人类咀嚼的值(频率为2 Hz的压缩和扭力负荷)一起使用。机械测试是在37摄氏度下用人造唾液进行的。连接中的微间隙通过并入高分辨率扫描电子显微镜的Image Analysis软件进行测量。使用自动调节的移液器将亚甲基蓝填充到植入物连接处,并通过高灵敏度光谱法确定渗漏量。我们显示内部连接的微间隙比外部连接的微间隙低,并且这些微间隙随着机械循环次数的增加而增加。当进行外部连接时,亚甲基蓝的泄漏较高。微间隙和机械载荷的影响对于避免细菌在牙种植体中定殖的长期行为非常重要。这些方面应为植入学家所了解。

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