Maeng You-Jin, Lee Hyung-Suk, Lee Eun-Song, Yoon Hong-Cheol, Kim Baek-Il
Department of Preventive Dentistry & Public Oral Health, BK21 PLUS Project, Yonsei University College of Dentistry, 03722, 50 Yonsei-ro, Seodaemun-gu, Seoul, Republic of Korea; Department of Dental Hygiene, Shinsung University, 31801, 1 Daehak-ro, Jeongmi-myeon, Dangjin-si, Chungcheongnam-do, Republic of Korea.
Department of Preventive Dentistry & Public Oral Health, BK21 PLUS Project, Yonsei University College of Dentistry, 03722, 50 Yonsei-ro, Seodaemun-gu, Seoul, Republic of Korea.
Photodiagnosis Photodyn Ther. 2020 Jun;30:101672. doi: 10.1016/j.pdpdt.2020.101672. Epub 2020 Jan 24.
The early noninvasive detection of crown microleakage is very important for tooth maintenance and preservation. A crown margin in a subgingival position combined with the obscuring effect of a ceramic crown make it difficult to diagnose microleakage using traditional methods such as visual-tactile examinations and radiography. The aim of this study was to determine the effectiveness of quantitative light-induced fluorescence (QLF) technology for diagnosing microleakage in an all-ceramic crown noninvasively. In this study the red fluorescence glow was detected through a crown wall using the Qraycam QLF device (AIOBIO, Seoul, Republic of Korea). No abnormalities were detected by a visual examination, whereas the Qraycam device revealed both strong red fluorescence and fluorescence loss in suspicious lesions, which were confirmed after crown removal. It was possible to determine that the carious lesions inside the crown were related to bacteria-induced microleakage. After performing caries removal and crown reattachment, the red fluorescence glow was no longer detected. QLF examinations made it easy to identify the presence of microleakage in an all-ceramic crown noninvasively based on red fluorescence. These findings indicate that QLF technology can be effectively applied to provide objective evidence for detecting microleakage and diagnosing carious lesions inside an all-ceramic crown noninvasively.
早期无创检测牙冠微渗漏对于牙齿的维护和保存非常重要。龈下位置的牙冠边缘以及陶瓷牙冠的遮挡效应使得使用视觉触觉检查和放射照相术等传统方法诊断微渗漏变得困难。本研究的目的是确定定量光诱导荧光(QLF)技术在无创诊断全瓷牙冠微渗漏方面的有效性。在本研究中,使用Qraycam QLF设备(韩国首尔AIOBIO公司)通过牙冠壁检测红色荧光辉光。视觉检查未发现异常,而Qraycam设备在可疑病变处显示出强烈的红色荧光和荧光损失,在去除牙冠后得到证实。可以确定牙冠内部的龋损与细菌诱导的微渗漏有关。在进行龋损去除和牙冠重新粘结后,不再检测到红色荧光辉光。QLF检查使得基于红色荧光无创识别全瓷牙冠中微渗漏的存在变得容易。这些发现表明,QLF技术可有效应用于为无创检测全瓷牙冠内的微渗漏和诊断龋损提供客观证据。