Mortazavi S M J, Dehghani Nazhvani A, Paknahad M
Ionizing and Non-ionizing Radiation Protection Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
Medical Physics and Medical Engineering Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran.
J Biomed Phys Eng. 2019 Apr 1;9(2):227-232. eCollection 2019 Apr.
Previous studies have shown that exposure to electromagnetic fields produced by magnetic resonance imaging or mobile phones can lead to increased microleakage of dental amalgam.
The aim of the present study was to investigate the effect of electromagnetic field of a commercial dental light cure device and a common GSM mobile phone on microleakage of amalgam restorations.
Identical class V cavities were prepared on the buccal surfaces of 60 non-carious extracted human teeth. The samples were randomly divided into 4 groups of 20 samples each. The samples in the first group were not exposed to electromagnetic fields, while the second and the third groups were exposed to electromagnetic fields produced by a commercial light cure device, or mobile phone radiation (60 min), respectively. The fourth group was exposed to electromagnetic radiations emitted by both mobile phone for 60 min and light cure device. Then, teeth samples were scored for microleakage according to a standard dye penetration protocol by examination under a stereomicroscope.
The mean score of microleakage in the fourth group (light cure + mobile phone) was significantly higher than that of the control group (P =0.030). Moreover, the scores of microleakage in this group were significantly higher than that of the second group (light cure only) (P= 0.043).
Exposure of amalgam restorations to electromagnetic fields produced by both light cure devices and mobile phones can synergistically increase the microleakage of amalgam restorations.
先前的研究表明,暴露于磁共振成像或移动电话产生的电磁场会导致牙科汞合金微渗漏增加。
本研究旨在探讨商用牙科光固化设备和普通GSM移动电话的电磁场对汞合金修复体微渗漏的影响。
在60颗非龋性拔除的人牙颊面制备相同的V类洞。将样本随机分为4组,每组20个样本。第一组样本不暴露于电磁场,而第二组和第三组分别暴露于商用光固化设备产生的电磁场或移动电话辐射(60分钟)。第四组暴露于移动电话和光固化设备发出的电磁辐射60分钟。然后,根据标准的染料渗透方案,在体视显微镜下检查牙齿样本的微渗漏情况并评分。
第四组(光固化+移动电话)的微渗漏平均评分显著高于对照组(P = 0.030)。此外,该组的微渗漏评分显著高于第二组(仅光固化)(P = 0.043)。
汞合金修复体暴露于光固化设备和移动电话产生的电磁场会协同增加汞合金修复体的微渗漏。