Mota Cláudia C B O, Fernandes Luana O, Cimões Renata, Gomes Anderson S L
Graduate Program in Dentistry, Federal University of Pernambuco, Recife, Brazil.
Faculty of Dentistry, Caruaruense Association of Technical and Higher Education, Caruaru, Brazil.
J Periodontol. 2015 Sep;86(9):1087-94. doi: 10.1902/jop.2015.150047. Epub 2015 Apr 16.
Periodontitis is a multifactorial and infectious disease that may result in significant debilitation. The aim of this study is to exploit two optical coherence tomography (OCT) systems operating in the Fourier domain at different wavelengths, 930 and 1,325 nm, for structural analysis of periodontal tissue in porcine jaws.
Five fresh porcine jaws were sectioned and stored in formalin before OCT analysis. Two- and three-dimensional OCT images of the tooth/gingiva interface were performed, and measurements of the gingival structures were obtained. The 930-nm OCT system operates in the spectral domain, whereas the 1,325-nm system is a swept-source model. Stereomicroscope images, the gold standard, were used for direct comparison.
Through image analysis, it is possible to identify the free gingiva and the attached gingiva, the calculus deposition over tooth surfaces, and the subgingival calculus that enables the enlargement of the gingival sulcus. In addition, the gingival thickness and the gingival sulcus depth can be non-invasively measured, varying from 0.8 to 4 mm.
Regarding the ability of the two OCT systems to visualize periodontal structures, the system operating at 1,325 nm shows a better performance, owing to a longer central wavelength that allows deeper tissue penetration. The results with the system at 930 nm can also be used, but some features could not be observed due to its lower penetration depth in the tissue.
牙周炎是一种多因素的感染性疾病,可能导致严重的身体衰弱。本研究的目的是利用两个在傅里叶域中以不同波长(930和1325nm)运行的光学相干断层扫描(OCT)系统,对猪颌骨中的牙周组织进行结构分析。
在进行OCT分析之前,将五个新鲜猪颌骨切片并保存在福尔马林中。对牙齿/牙龈界面进行二维和三维OCT成像,并获得牙龈结构的测量数据。930nm的OCT系统在光谱域运行,而1325nm的系统是扫频光源模型。使用立体显微镜图像(金标准)进行直接比较。
通过图像分析,可以识别游离龈和附着龈、牙齿表面的牙结石沉积以及导致龈沟扩大的龈下牙结石。此外,可以无创测量牙龈厚度和龈沟深度,范围为0.8至4mm。
关于两个OCT系统可视化牙周结构的能力,在1325nm运行的系统表现更好,这是由于其较长的中心波长允许更深的组织穿透。930nm系统的结果也可以使用,但由于其在组织中的穿透深度较低,一些特征无法观察到。