Vengatachalapathi Hariharasudhan, Naik Rajesh, Rao Rachana, Venugopal Ranganath, Nichani Ashish S
Department of Periodontology, AECS Maaruti College of Dental Sciences and Research Centre, Bangalore, India.
J Int Acad Periodontol. 2017 Jan 2;19(1):15-21.
This study aimed to evaluate the influence of scaler tip wear and different working parameters, i.e., lateral force, power setting and tip angulation, on the roughness of root surfaces following treatment with piezoelectric ultrasonic scaling devices.
Twenty piezoelectric ultrasonic scaler inserts (10 worn/10 new) were selected to examine the erosion ratio (ER) under atomic force microscopy (AFM). A total of 160 root samples were prepared and instrumented by new (n = 80) and worn inserts (n = 80) at different working parameters (tip angulation, power setting, lateral force). Roughness change (Rc) on root surfaces after instrumentation was examined by a contact profilometer.
Statistically significant differences were found between the mean ERs of new and worn tips (p < 0.0001). The various combinations of the assessed working parameters showed synergistic effects resulting in a wide range of root surface roughness. The present study found the higher Rc in the group with a 45° angulation, (P10) high power setting and 1.0 N lateral force (subgroup 8) when compared to other groups. Among the groups, the worn scaler tips subgroup 8 showed a higher Rc (5.692 ± 0.81) when compared to new scaler tips subgroup 8 (4.798 ± 0.51; p < 0.001).
The findings of the present study highlighted that scaler tip wear strongly influences the root surface roughness when used at higher tip angulation, lateral force and power settings. Hence, ultrasonic scaler tip wear should be periodically evaluated and should be considered as much as the other working parameters.
本研究旨在评估使用压电超声洁治设备治疗后,洁治器尖端磨损及不同工作参数(即侧向力、功率设置和尖端角度)对牙根表面粗糙度的影响。
选择20个压电超声洁治器插入头(10个磨损的/10个新的),在原子力显微镜(AFM)下检测侵蚀率(ER)。总共制备了160个牙根样本,并使用新的(n = 80)和磨损的插入头(n = 80)在不同工作参数(尖端角度、功率设置、侧向力)下进行处理。使用接触式轮廓仪检测处理后牙根表面的粗糙度变化(Rc)。
新尖端和磨损尖端的平均侵蚀率之间存在统计学显著差异(p < 0.0001)。所评估的工作参数的各种组合显示出协同效应,导致牙根表面粗糙度范围广泛。本研究发现,与其他组相比,在45°角度、(P10)高功率设置和1.0 N侧向力(亚组8)的组中,Rc更高。在这些组中,磨损的洁治器尖端亚组8的Rc(5.692 ± 0.81)高于新洁治器尖端亚组8(4.798 ± 0.51;p < 0.001)。
本研究结果突出表明,当在较高的尖端角度、侧向力和功率设置下使用时,洁治器尖端磨损会强烈影响牙根表面粗糙度。因此,应定期评估超声洁治器尖端的磨损情况,并且应与其他工作参数一样予以重视。