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确定在使用压电技术进行种植位点制备过程中可能影响温度升高的因素。

Identification of possible factors influencing temperatures elevation during implant site preparation with piezoelectric technique.

作者信息

Lamazza Luca, Laurito Domenica, Lollobrigida Marco, Brugnoletti Orlando, Garreffa Girolamo, De Biase Alberto

机构信息

Oral and Maxillo-Facial Sciences Department, "Sapienza" University of Rome, Italy.

Euro-Mediterranean Institute of Science and Technology (I.E.ME.S.T.), Palermo, Italy; Mediterranean Diagnostic (ME.DI.), Castellammare di Stabia, Napoli, Italy.

出版信息

Ann Stomatol (Roma). 2015 Feb 9;5(4):115-22. eCollection 2014 Oct-Dec.

Abstract

BACKGROUND

Overheating during implant site preparation negatively affects the osseointegration process as well the final outcome of implant rehabilitations. Piezoelectric techniques seem to provide to a gentle implant preparation although few scientific reports have investigated the heat generation and its underlying factors.

PURPOSE

To investigate, through a proper methodological approach, the main factors influencing temperature rise during piezoelectric implant site preparation.

MATERIALS AND METHODS

Different piezoelectric tips (IM1s, IM2, P2-3, IM3, Mectron Medical Technology, Carasco, Italy) have been tested. The experimental set-up consisted in a mechanical positioning device equipped with a load cell and a fluoroptic thermometer.

RESULTS

The first tip of the sequence (IM1s) generated the highest temperature increasing (ΔT). The diamond tips (IM1s and P2-3) determined higher ΔT values than the smooth tips (IM2 and IM3). Further tests with IM1s suggested that the temperature elevation during the first thirty seconds may be predictive of the maximal temperature as well as of the overall thermal impact.

CONCLUSIONS

Working load, working movements management and bone features resulted to be the main factors influencing temperature rise during piezoelectric implant site preparation. Irrigant temperature and clogging effect may also synergically contribute to the heat generation.

摘要

背景

种植体植入部位预备过程中的过热会对骨结合过程以及种植修复的最终结果产生负面影响。压电技术似乎能实现轻柔的种植体预备,不过仅有少数科学报告对其产热情况及其潜在因素进行过研究。

目的

通过恰当的方法,探究影响压电种植体植入部位预备过程中温度升高的主要因素。

材料与方法

对不同的压电钻针(IM1s、IM2、P2 - 3、IM3,意大利卡拉斯科的梅克tron医疗技术公司)进行了测试。实验装置包括一个配备了称重传感器和荧光温度计的机械定位装置。

结果

序列中的首个钻针(IM1s)产生的温度升高幅度(ΔT)最大。金刚石钻针(IM1s和P2 - 3)产生的ΔT值高于光滑钻针(IM2和IM3)。对IM1s的进一步测试表明,最初30秒内的温度升高可能预示着最高温度以及整体热影响。

结论

工作负荷、工作动作管理和骨质是影响压电种植体植入部位预备过程中温度升高的主要因素。冲洗液温度和堵塞效应也可能协同促进产热。

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4
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Clin Oral Implants Res. 2011 Dec;22(12):1361-5. doi: 10.1111/j.1600-0501.2010.02126.x. Epub 2011 Mar 21.
7
Effects of irrigation temperature on heat control in vitro at different drilling depths.
Clin Oral Implants Res. 2009 Mar;20(3):294-8. doi: 10.1111/j.1600-0501.2008.01643.x.
8
Micromorphometrical analysis of conventional osteotomy techniques and ultrasonic osteotomy at the rabbit skull.
Clin Oral Implants Res. 2008 Jun;19(6):570-5. doi: 10.1111/j.1600-0501.2007.01516.x.
10
Ultrasound and matter--physical interactions.
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