首页> 美国卫生研究院文献>Journal of Lasers in Medical Sciences >The Efficiency of the Er: YAG Laser and PhotonInduced Photoacoustic Streaming (PIPS) as an Activation Method in Endodontic Irrigation: A Literature Review
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The Efficiency of the Er: YAG Laser and PhotonInduced Photoacoustic Streaming (PIPS) as an Activation Method in Endodontic Irrigation: A Literature Review

机译:ER:YAG激光和光子诱导光声流(PIPS)作为牙髓灌溉中的活化方法的效率:文献综述

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摘要

In the field of endodontics, lasers have been used for a long time for the optimization of Endodontic irrigation in particular. The laser-activated irrigation (LAI) technique is based on the photomechanical effects of the lasers at low settings. They create specific cavitation phenomena and acoustic streaming in intracanal fluids. More recently, a new technique with a Er:YAG laser has been used with sub-ablative energy (20 mJ, 15 Hz) and ultra-short pulses (50 µs). This leads to intracanal cavitation and shockwaves as a result of photoacoustic and photomechanical effects. This phenomenon is called photon-induced photoacoustic streaming (PIPS). PIPS and Laser activated irrigation are described in the literature as a revolutionary and powerful method to activate the irrigant; however, systematic literature on this topic is missing. This review compares the literature on Er:YAG LAI and PIPS on endodontic irrigation with other irrigation methods. An article search was performed on the PubMed database using a series of keywords related to endodontic irrigation, including Er:YAG LAI and PIPS; 59 articles were selected for the review according to the inclusion and exclusion criteria. No study was found. The Er:YAG LAI and PIPS outperformed other methods in 33 of the 59 articles. There was a great variety in the study designs including bacterial incubation time, laser parameters, irrigation protocols, and irrigating solution used. The evidence suggests that the Er:YAG LAI and PIPS are promising in canal disinfection as well as debris and smear layer removal. However, the large variety in the study methods makes the results less significant. Further studies are needed to better evaluate the efficiency of these techniques, especially studies.
机译:在牙髓症领域中,尤其用于优化牙髓灌溉的长时间。激光激活的灌溉(LAI)技术基于激光在低设置下激光的光学力学效应。它们在颅内流体中产生特定的空化现象和声学流。最近,具有ER的新技术:YAG激光器已被用于亚烧蚀能量(20MJ,15Hz)和超短脉冲(50μs)。由于光声和光学机械效应,这导致颈内腔和冲击波。这种现象称为光子诱导的光声流(PIPS)。在文献中描述了PIPS和激光活化灌溉作为激活灌溉的革命性和强大的方法;但是,缺少了对此主题的系统文献。该评论将文献与ER:YAG LAI和其他灌溉方法进行了牙髓灌溉的影响。在PubMed数据库上使用与牙髓灌溉有关的一系列关键字进行文章搜索,包括ER:YAG LAI和PIPS;根据纳入和排除标准选择59篇文章进行审查。没有发现任何研究。 ER:YAG LAI和PIPS在59篇文章中33篇的其他方法表现出其他方法。在研究设计中,包括细菌孵化时间,激光参数,灌溉方案和使用的灌溉溶液存在良好。证据表明,ER:YAG LAI和PIPS在运河消毒以及碎片和涂抹层上拆除。然而,研究方法中的各种各样使得结果不太重要。需要进一步的研究来更好地评估这些技术的效率,特别是研究。

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