Guizhou University Medical College, Guiyang, Guizhou, China.
Guiyang Hospital of Stomatology, Guiyang, Guizhou, China.
Int Dent J. 2024 Aug;74(4):876-883. doi: 10.1016/j.identj.2023.12.005. Epub 2024 Jan 17.
During dental treatment procedures ultrasonic scalers generate droplets containing microorganisms such as bacteria and viruses. Hence, it is necessary to study the dynamic properties of generated droplets in order to investigate the risks associated with the spread of infection. The aim of this study was to visualise the flow state of droplets and to evaluate the impact of droplets generated during the use of an ultrasonic scaler during an oral surgical procedure.
We studied the spatial flow of liquid droplets through a combination of imaging and numeric simulation of a simulated dental treatment processes. First, we photographed the real time images of the ultrasonic scaler and evaluated the images using image-processing software Image J to visualise the flow of liquid droplets. Finally we simulated the flow process of liquid droplets by using the initial velocity of droplet splashing and the angle of the obtained information using computerised fluid dynamics technology.
Under different working conditions, the droplet particle splashing velocity, maximum height, and spray angle varied, but the particle trajectory was generally parabolic. The maximum droplet velocity varied between 3.56 and 8.56 m/s, and the splashing height was between 40 and 110 mm.
During risk assessment of an ultrasonic scaler usage, difficulties arise due to the insufficient research on droplet velocity and distribution. This study aims to address this gap by visualising the flow trajectories of droplets generated by ultrasonic scalers. The obtained data will assist in developing more effective interventions based on spatial and temporal distribution of droplets. This provides a new approach for droplet particle research and offers new strategies for public health prevention and control.
在牙科治疗过程中,超声洁牙机会产生含有细菌和病毒等微生物的液滴。因此,有必要研究生成液滴的动态特性,以研究与感染传播相关的风险。本研究旨在可视化液滴的流动状态,并评估在口腔手术过程中使用超声洁牙机产生的液滴的影响。
我们通过模拟牙科治疗过程的成像和数值模拟相结合来研究液滴的空间流动。首先,我们拍摄了超声洁牙机的实时图像,并使用图像处理软件 Image J 对图像进行评估,以可视化液滴的流动。最后,我们使用获得的初始液滴飞溅速度和角度信息,通过计算机流体动力学技术来模拟液滴的流动过程。
在不同的工作条件下,液滴颗粒飞溅速度、最大高度和喷射角度不同,但颗粒轨迹通常呈抛物线状。最大液滴速度在 3.56 至 8.56 米/秒之间,飞溅高度在 40 至 110 毫米之间。
在评估超声洁牙机使用风险时,由于对液滴速度和分布的研究不足,存在困难。本研究旨在通过可视化超声洁牙机产生的液滴的流动轨迹来解决这一差距。所获得的数据将有助于根据液滴的时空分布制定更有效的干预措施。这为液滴颗粒研究提供了一种新方法,并为公共卫生预防和控制提供了新策略。