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首页> 外文期刊>Lasers in surgery and medicine >Er:YAG laser activation of sodium hypochlorite for root canal soft tissue dissolution
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Er:YAG laser activation of sodium hypochlorite for root canal soft tissue dissolution

机译:呃:次氯酸钠的掺钕钇铝石榴石激光器激活根管治疗软组织解散

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Background and Objective The aim of this in vitro study was to investigate the effect of Er:YAG laser irradiation on the ability of sodium hypochlorite (NaOCl) to dissolve soft tissue during endodontic procedures. Materials and Methods Two acrylic glass plates, each containing a semi-canal, were bolted together to form a complete canal. This geometry permitted one semi-canal to be filled with fine liver sausage of bovine origin dyed by methylene blue and the other with NaOCl (4.00-4.99% available chlorine; Sigma-Aldrich Corporation, St. Louis, MA), which was then activated by Er:YAG laser irradiation (KEY Laser 3; KaVo, Biberach, Germany) using a plain-ended fiber tip and a range of output energy and repetition rate. To achieve relatively low output energy from high input energy, the laser beam was attenuated by placing glass slides in the beam path. The resultant images acquired were analyzed using pixel-based analysis. Samples were statistically analyzed (two-way ANOVA, P < 0.05, univariate, bifactorial; IBM SPSS Statistics 19, SPSS Inc., Chicago, IL). Results Both output energy and repetition rate significantly influenced the tissue dissolution ability of NaOCl (P < 0.05). Conclusion Within the limitations of this in vitro study, we conclude that laser activation of NaOCl at 200 mW output power leads to effective soft tissue dissolution. This finding can be of use to endodontists pursuing effective soft tissue dissolution from their irrigants.
机译:背景和目的体外的目的研究旨在探讨Er的影响:掺钕钇铝石榴石激光辐照对钠的能力次氯酸盐(NaOCl)解散软组织在牙髓学的过程。方法两个有机玻璃板块,每个包含semi-canal,螺栓连接在一起形成一个完整的运河。semi-canal充满细肝脏香肠亚甲蓝和牛血统的染色其他与NaOCl(4.00 - -4.99%可用氯;Sigma-Aldrich公司,圣路易斯,MA)然后激活Er:掺钕钇铝石榴石激光器照射(关键激光3;plain-ended纤维提示和一系列的输出能源和重复率。从高输入能量,低输出能量激光被放置玻片减毒在光束路径中。分析了使用基于像素分析。统计分析(双向方差分析,P <0.05、单变量bifactorial;SPSS Inc .统计19日,芝加哥,IL)。输出能量和重复率显著影响组织解散NaOCl能力(P < 0.05)。体外研究的局限性,我们得出这样的结论:激光激活NaOCl 200兆瓦输出功率会导致有效的软组织解散。牙髓学追求有效的软组织从他们的irrigants解散。

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