Department of Systems Medicine, University of Rome "Tor Vergata", Viale Oxford 81, 00133, Rome, Italy.
Department of Industrial Engineering, University of Rome 'Tor Vergata', Rome, Italy.
Prog Orthod. 2023 Mar 13;24(1):9. doi: 10.1186/s40510-023-00460-9.
To evaluate by means of profilometric analysis and scanning electronic microscope (SEM) the effects on enamel surfaces of oscillating mechanical systems for interproximal enamel reduction (IPR). Fifteen complete (Group 1) oscillating IPR sequence and 15 single metallic strips (Group 2) for active IPR phase of 0.2 mm were selected and tested on 30 freshly extracted teeth by means of tribological tests with alternative dry-sliding motion (Linear Reciprocating Tribometer, C.S.M. Instruments, Peseaux, Switzerland). Enamel surface roughness and waviness measurements were assessed by contact probe surface profiler (TalySurf CLI 2000; Taylor Hobson, Leicester, UK) and a TayMap software for the 3D analysis. Statistical analysis was performed with independent samples t-test. Significance was established at the P < .05 level. SEM analysis of enamel surfaces was conducted with a FEI Quanta 200 (Hillsboro, USA) in high vacuum at 30.00 kV. Images were acquired at 30X, 100X, and 300X of magnification.
Teeth undergone Group 1 showed lower values of surface roughness (Ra - 0.34 µm, Rt - 1.55 µm) and significant increase of waviness parameters (Wa 0.25 µm, Wt 4.02 µm) when compared with those treated with Group 2. SEM evaluation showed smoothers and more regular surfaces when IPR was performed by complete IPR sequence. Single metallic strip determined more irregular surfaces characterized by extended grooves, alternated with enamel ridges and irregular fragments.
The adoption of a standardized oscillating IPR sequence determines more regular and harmonious enamel surfaces at the end of the procedure. An adequate polishing after IPR plays a crucial role to guarantee a good long-term prognosis and a good respect of biological structures.
通过轮廓分析和扫描电子显微镜(SEM)评估用于邻面釉质减少(IPR)的振荡机械系统对釉质表面的影响。选择了 15 个完整的(第 1 组)振荡 IPR 序列和 15 个用于主动 IPR 阶段 0.2mm 的单个金属条(第 2 组),并通过带有交替干滑动运动的摩擦试验(线性往复摩擦计,CSM 仪器,瑞士 Peseaux)对 30 个新鲜提取的牙齿进行了测试。使用接触式探针表面轮廓仪(TalySurf CLI 2000;Taylor Hobson,英国莱斯特)和 3D 分析的 TayMap 软件评估釉质表面粗糙度和波纹度测量值。使用独立样本 t 检验进行统计分析。在 P<0.05 水平上建立了显著性。使用 FEI Quanta 200(美国希尔斯伯勒)在 30.00kV 的高真空中对釉质表面进行 SEM 分析。在 30X、100X 和 300X 的放大倍数下获取图像。
与第 2 组相比,第 1 组的牙齿表面粗糙度(Ra-0.34µm,Rt-1.55µm)值较低,波纹度参数(Wa-0.25µm,Wt-4.02µm)显著增加。SEM 评估显示,当通过完整的 IPR 序列进行 IPR 时,表面更光滑且更规则。单个金属条确定了更不规则的表面,其特征是扩展的凹槽,与釉质脊交替并具有不规则的碎片。
采用标准化的振荡 IPR 序列可在手术结束时获得更规则和谐的釉质表面。IPR 后进行适当的抛光对于保证良好的长期预后和对生物结构的良好尊重至关重要。