Effects of IPR by mechanical oscillating strips system on biological structures: a quantitative and qualitative evaluation.

IF 4.8 2区 医学 Q1 Dentistry Progress in Orthodontics Pub Date : 2023-03-13 DOI:10.1186/s40510-023-00460-9
Francesca Gazzani, Denise Bellisario, Laura Fazi, Alessia Balboni, Silvia Licoccia, Chiara Pavoni, Paola Cozza, Roberta Lione
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Abstract

Background: 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.

Results: 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.

Conclusion: 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.

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机械振荡条带系统IPR对生物结构的影响:定量和定性评价。
背景:采用轮廓分析和扫描电镜(SEM)评价振荡机械系统对近端间牙釉质复位(IPR)牙釉质表面的影响。选择15个完整的(第1组)振荡IPR序列和15个0.2 mm主动IPR相位的单金属条(第2组),通过可选干滑动运动的摩擦学测试在30个刚拔出的牙齿上进行测试(Linear往复Tribometer, C.S.M. Instruments, Peseaux, Switzerland)。牙釉质表面粗糙度和波纹度测量采用接触探针表面轮廓仪(TalySurf CLI 2000;Taylor Hobson, Leicester, UK)和用于3D分析的TayMap软件。采用独立样本t检验进行统计学分析。结果:与组2相比,组1的牙齿表面粗糙度值较低(Ra - 0.34µm, Rt - 1.55µm),波浪度参数显著增加(Wa 0.25µm, Wt 4.02µm)。扫描电镜评价显示,完整的IPR序列进行IPR时,表面更加光滑和规则。单金属条确定了更多不规则的表面,其特征是延伸的凹槽,与珐琅脊和不规则碎片交替。结论:采用标准的IPR振荡序列可以在手术结束时确定更规则和和谐的牙釉质表面。IPR后适当的抛光对于保证良好的长期预后和良好的生物结构方面起着至关重要的作用。
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来源期刊
Progress in Orthodontics
Progress in Orthodontics Dentistry-Orthodontics
CiteScore
7.30
自引率
4.20%
发文量
45
审稿时长
13 weeks
期刊介绍: Progress in Orthodontics is a fully open access, international journal owned by the Italian Society of Orthodontics and published under the brand SpringerOpen. The Society is currently covering all publication costs so there are no article processing charges for authors. It is a premier journal of international scope that fosters orthodontic research, including both basic research and development of innovative clinical techniques, with an emphasis on the following areas: • Mechanisms to improve orthodontics • Clinical studies and control animal studies • Orthodontics and genetics, genomics • Temporomandibular joint (TMJ) control clinical trials • Efficacy of orthodontic appliances and animal models • Systematic reviews and meta analyses • Mechanisms to speed orthodontic treatment Progress in Orthodontics will consider for publication only meritorious and original contributions. These may be: • Original articles reporting the findings of clinical trials, clinically relevant basic scientific investigations, or novel therapeutic or diagnostic systems • Review articles on current topics • Articles on novel techniques and clinical tools • Articles of contemporary interest
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