Bogovič Valerija, Svete Andrej, Bajsić Ivan
Laboratory of Measurements in Process Engineering, Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia.
Laboratory of Measurements in Process Engineering, Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia
Proc Inst Mech Eng H. 2016 Oct;230(10):907-17. doi: 10.1177/0954411916660737. Epub 2016 Jul 25.
Heat, generated during the drilling of a dental implant site preparation, leads to a temperature rise and consequently to a thermal injury of the bone tissue surrounding the implant site, which can cause the subsequent implant failure. In this article, we present new findings related to the temperature rise during implant site drilling under real conditions on a bovine rib bone specimen. The experiments were designed with the help of a full-factorial design in randomized complete blocks, where the main effects of the drill diameter in combination with the drilling force and the drilling speed, and their interactions, on the temperature rise were determined. The temperature rise in the bone under real conditions was measured as the implant site was being prepared by a dentist using intermittent, graduated drilling and external irrigation. Results show that the drill diameter has statistically significant effect, independent of the drilling procedure used. Among the examined drilling parameters, the drill diameter has the greatest effect, where an increase in the drill diameter first causes a decrease in the temperature rise and further increase in the drill diameter causes its increase. During the continuous and one-step drilling, the temperatures of the bones were up to 40.5 °C and during the drilling under actual conditions up to 30.11 °C.
在牙种植体植入部位制备钻孔过程中产生的热量会导致温度升高,进而对种植体部位周围的骨组织造成热损伤,这可能导致随后的种植体失败。在本文中,我们展示了在牛肋骨标本上实际条件下种植体部位钻孔过程中与温度升高相关的新发现。实验借助随机完全区组的全因子设计进行,其中确定了钻头直径与钻力和钻孔速度的主效应及其相互作用对温度升高的影响。在实际条件下,当牙医使用间歇性、分级钻孔和外部冲洗来制备种植体部位时,测量骨内的温度升高。结果表明,钻头直径具有统计学上的显著影响,与所使用的钻孔程序无关。在所检查的钻孔参数中,钻头直径的影响最大,钻头直径增加首先会导致温度升高降低,而钻头直径的进一步增加会导致温度升高增加。在连续一步钻孔过程中,骨的温度高达40.5°C,在实际条件下钻孔过程中温度高达30.11°C。