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超声洁治过程中微生物气溶胶的分布特征及防护方法优化

Distribution characteristics of microbial aerosols and optimization of protective methods during ultrasonic scaling procedure.

作者信息

Chen Menghan, Guo Jinjing, Pang Xiaobing, Feng Jianying, Zheng Sheng

机构信息

School/Hospital of Stomatology, Zhejiang Chinese Medical University, Hangzhou, 310053, China.

College of Environment, Zhejiang University of Technology, Hangzhou, 310014, China.

出版信息

Sci Rep. 2025 Jun 4;15(1):19598. doi: 10.1038/s41598-025-04857-w.

Abstract

This study aimed to explore microbial aerosol distribution characteristics in the dental clinic during ultrasonic scaling and evaluate the effects of three different interventions on aerosol distribution and protective effects. For twenty minutes, ultrasonic scaling was carried out in a standardized operatory room. A blank control group and three intervention groups were created: high-volume evacuator (HVE), plasma purification (PP), and fenestrated ventilation (VT). The mass concentration of PM1.0, PM2.5, and PM10.0 aerosol particles was tracked in real time, and colony counts were calculated using air deposition. After ultrasonic scaling, there was a significant increase in aerosol dispersion of various particle sizes and distribution within a 1.5-m radius of the core area (P < 0.05). The number of colonies in each group varied over time at 0.5 and 1.0 m from the patient's head, but there was no significant difference at 1.5 m (P > 0.05). The PP group demonstrated the greatest decrease in aerosol mass concentration difference. The VT group initially had the lowest aerosol mass concentration difference, but with a slight decrease. The aerosol mass concentration difference between the HVE groups grew with distance. Traditional ultrasonic scaling poses a risk of aerosol contamination during and after treatment. The operatory room's air can be efficiently purified by plasma purification, which maintains lower levels of aerosol particle size than other groups. Microbial aerosols created by ultrasonic scaling can be quickly reduced by ventilation. At close range, the high-volume evacuator can lower the risk of infection while the benefit diminishes as the distance increases.Trial registration: This study was registered on the website of China Clinical Trial Registration Center (ChiCTR2400090751) (12/10/2024).

摘要

本研究旨在探讨超声洁牙过程中牙科诊所内微生物气溶胶的分布特征,并评估三种不同干预措施对气溶胶分布及防护效果的影响。在标准化的诊疗室内进行了20分钟的超声洁牙操作。设立了一个空白对照组和三个干预组:大容量抽吸器(HVE)组、等离子体净化(PP)组和带孔通风(VT)组。实时跟踪PM1.0、PM2.5和PM10.0气溶胶颗粒的质量浓度,并通过空气沉降计算菌落数。超声洁牙后,核心区域半径1.5米范围内各种粒径气溶胶的扩散及分布显著增加(P < 0.05)。在距患者头部0.5米和1.0米处,每组的菌落数随时间变化,但在1.5米处无显著差异(P > 0.05)。PP组的气溶胶质量浓度差异下降幅度最大。VT组最初的气溶胶质量浓度差异最低,但略有下降。HVE组之间的气溶胶质量浓度差异随距离增加。传统超声洁牙在治疗期间和治疗后存在气溶胶污染风险。等离子体净化可有效净化诊疗室内空气,其维持的气溶胶粒径水平低于其他组。超声洁牙产生的微生物气溶胶可通过通风迅速减少。在近距离,大容量抽吸器可降低感染风险,但随着距离增加,这种益处会减弱。试验注册:本研究在中国临床试验注册中心网站(ChiCTR2400090751)(2024年10月12日)注册。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f66a/12137542/cd6ec013cd11/41598_2025_4857_Fig1_HTML.jpg

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