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光子诱导光声流技术在根管冲洗中的波长依赖性。

Wavelength dependence of photon-induced photoacoustic streaming technique for root canal irrigation.

机构信息

University of Ljubljana, Faculty of Mechanical Engineering, Askerceva 6, 1000 Ljubljana, Slovenia.

Institute Josef Stefan, Jamova 39, 1000 Ljubljana, Slovenia.

出版信息

J Biomed Opt. 2016 Jul 1;21(7):75007. doi: 10.1117/1.JBO.21.7.075007.

Abstract

Laser-enhanced irrigation of complex root canals appears to be a very promising technique to improve the outcome of root canal treatment. This applies, in particular, if the technique can be effective at very low laser energies in irrigating not only the main canal but also the small lateral canals. This is important in order to avoid potential undesirable effects at higher laser energies such as temperature increase, dentin ablation, or extrusion of irrigating solution beyond the apical foramen. An improved understanding of the role of laser parameters, such as laser wavelength and pulse duration, in irrigation of lateral canals is therefore desired in order to optimize treatment efficacy. The influence of laser wavelength and pulse duration on cavitation phenomena was studied using shadow photography and a method of measuring fluid flow in lateral canals based on tracking of movements of small air bubbles naturally forming in liquid as a result of laser agitation. A simulated model of a root canal including a narrow lateral canal designed to represent typical root canal morphology was used for the water flow measurements. The following three laser wavelengths with relatively high absorption in water were studied: Er:YAG (2.94  μm), Er,Cr:YSGG (2.73  μm), and Nd:YAP (1.34  μm). Among the three wavelengths studied, the Er:YAG laser wavelength was found to be the most effective in formation of cavitation bubbles and in generating fluid motions within narrow lateral canals. A comparison between the shadow photography and fluid motion data indicates that it is the bubble’s radius and not the bubble’s volume that predominantly influences the fluid motion within lateral canals. Based on the results of our study, it appears that effective minimally invasive laser-assisted irrigation can be performed with low Er:YAG laser pulse energies below 10 mJ.

摘要

激光增强冲洗复杂根管似乎是一种很有前途的技术,可以提高根管治疗的效果。特别是如果该技术在非常低的激光能量下不仅能有效冲洗主根管,还能冲洗细小的侧根管,效果就更为显著。这一点很重要,因为在较高的激光能量下,可能会产生不理想的效果,如温度升高、牙本质消融或冲洗液超出根尖孔的挤出。因此,为了优化治疗效果,需要更好地了解激光参数(如激光波长和脉冲持续时间)在侧根管冲洗中的作用。

通过阴影摄影和一种基于跟踪由于激光搅动而在液体中自然形成的小气泡运动来测量侧根管中流体流动的方法,研究了激光波长和脉冲持续时间对空化现象的影响。使用模拟的包括一个设计为代表典型根管形态的狭窄侧根管的根管模型进行了水流测量。研究了三种在水中相对高吸收的激光波长:铒:钇铝石榴石(2.94μm)、铒,铬:钇石榴石(2.73μm)和掺钕钇铝石榴石(1.34μm)。在研究的三种波长中,发现铒:钇铝石榴石激光波长最有效地形成空化气泡,并在狭窄的侧根管内产生流体运动。阴影摄影和流体运动数据的比较表明,主要影响侧根管内流体运动的是气泡的半径,而不是气泡的体积。

根据我们的研究结果,似乎可以用低于 10 mJ 的低能量铒:钇铝石榴石激光脉冲进行有效的微创激光辅助冲洗。

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