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Infrared Thermographic Assessment of Cooling Effectiveness in Selected Dental Implant Systems

机译:红外热像仪评估某些种植牙系统的冷却效果

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摘要

The excessive temperature fluctuations during dental implant site preparation may affect the process of bone-implant osseointegration. In the presented studies, we aimed to assess the quality of cooling during the use of 3 different dental implant systems (BEGO®, NEO BIOTECH®, and BIOMET 3i®). The swine rib was chosen as a study model. The preparation of dental implant site was performed with the use of 3 different speeds of rotation (800, 1,200, and 1,500 rpm) and three types of cooling: with saline solution at room temperature, with saline solution cooled down to 3°C, and without cooling. A statistically significant difference in temperature fluctuations was observed between BEGO and NEO BIOTECH dental systems when cooling with saline solution at 3°C was used (22.3°C versus 21.8°C). In case of all three evaluated dental implant systems, the highest temperature fluctuations occurred when pilot drills were used for implant site preparation. The critical temperature, defined in the available literature, was exceeded only in case of pilot drills (of all 3 systems) used at rotation speed of 1,500 rpm without cooling.
机译:牙种植体位准备期间的过度温度波动可能会影响骨种植体骨整合的过程。在提出的研究中,我们旨在评估使用3种不同的种植牙系统(BEGO®,NEOBIOTECH®和BIOMET3i®)的冷却质量。选择猪肋骨作为研究模型。使用3种不同的旋转速度(800、1200和1,500 rpm)和三种冷却方式进行牙种植体部位的准备:室温下用盐水溶液,盐溶液冷却到3°C,以及没有冷却。当使用3°C的盐溶液冷却时(22.3°C对21.8°C),在BEGO和NEO BIOTECH牙科系统之间观察到了温度波动的统计学差异。对于所有三个评估过的牙种植体系统,当使用先导钻进行种植体位准备时,温度波动最大。仅在以1,500 rpm的转速无冷却的情况下使用(所有三个系统的)导向钻的情况下,才超过了可用文献中定义的临界温度。

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