Visualization of bubbles generation of electrical-driven EndoActivator tips during solutions activation in a root canal model and a modified extracted tooth: A pilot study

H. Peeters, Elvira Theola Judith, Ketut Suardita, Latief Mooduto
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Abstract

Background: EndoActivator, a sonically-driven canal irrigation system (Dentsply Tulsa Dental Specialties, Tulsa, OK), has been developed for activating root canal irrigants, and has recently been released onto the market. Purpose: To obtain an initial understanding of bubbles generation of electrical EndoActivator tips during activation of the irrigant in a transparent root canal model and a modified extracted tooth. Methods: A modified extracted tooth and a straight glass model were filled with a solution containing 17% EDTA or 3% NaOCl. A medium activator tip 22-mm polymer noncutting #25, 0.04 file driven by an electrical sonic hand-piece at 190 Hz (highest level) induced pressure waves that produced macro- and micro-bubbles. The physical mechanisms involved were visualized using a Miro 320S high-speed imaging system (Phantom, Wayne, NJ, USA) with high temporal and spatial resolutions. The imaging system acquired images at 25,000 frames per second with 320×x240 pixels per image, and attached a 60-mm f/2.8 macro lens (Nikon, Tokyo, Japan). Results: The end of the tip did not generate bubbles formation. Disruption of surface tension at the air–solution system in the glass canal model by an electrical sonic driven EndoActivator tip generated bubbles in the solution. However, it did not occur at the system of solution–air interfaces in the glass canal and modified extracted tooth. Conclusion: The physical mechanism of the solution activated by an electrical sonic driven EndoActivator tip in generting bubbles formation is because the surface tension at the air–solution system disruption. No bubbles formation occurred in the solution in the restricted space either in the solution-air system or modified extracted tooth. Better understanding of the physical mechanisms that relate specifically to the activation behaviour of EndoActivator tips in solutions is key to improving the cleaning mechanism that applies during root canal treatment.
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在根管模型和改良拔牙的溶液激活过程中,电驱动的EndoActivator尖端产生气泡的可视化:一项试点研究
背景:EndoActivator是一种声波驱动的根管冲洗系统(Dentsply Tulsa Dental Specialties, Tulsa, OK),已开发用于激活根管冲洗剂,并于最近发布到市场上。目的:初步了解透明根管模型和改良拔牙中灌洗剂激活过程中电EndoActivator尖端产生气泡的情况。方法:用含有17% EDTA或3% NaOCl的溶液填充改良拔牙和直玻璃模型。一个中等激活剂尖端22毫米聚合物非切割#25,0.04文件,由190赫兹(最高水平)的电子声波手片驱动,产生产生宏观和微观气泡的压力波。所涉及的物理机制使用高时空分辨率的Miro 320S高速成像系统(Phantom, Wayne, NJ, USA)进行可视化。成像系统以每秒25,000帧的速度获取图像,每张图像的像素为320×x240,并附带一个60毫米f/2.8微距镜头(尼康,东京,日本)。结果:针尖端未形成气泡。通过电声驱动的EndoActivator尖端破坏玻璃管模型中空气-溶液系统的表面张力,在溶液中产生气泡。但在玻璃管内的溶液-空气界面系统和改良拔牙处没有发生。结论:电声驱动的EndoActivator尖端激活溶液产生气泡的物理机制是由于空气-溶液系统的表面张力被破坏。无论在溶液-空气系统中还是在改良的拔牙中,在有限的空间内,溶液中都没有气泡形成。更好地理解与EndoActivator尖端在溶液中的激活行为相关的物理机制是改善根管治疗过程中清洁机制的关键。
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CiteScore
0.70
自引率
0.00%
发文量
44
审稿时长
16 weeks
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