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Comparative analysis of gingival phenotype in animal and human experimental models using optical coherence tomography in a non-invasive approach

机译:一种非侵入性方法光学相干断层扫描的动物和人类实验模型中牙龈表型的比较分析

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Imaging methods are widely used in diagnostic and among the diversity of modalities, optical coherence tomography (OCT) is nowadays commercially available and considered the most innovative technique used for imaging applications, in both medical and non-medical applications. In this study, we exploit the OCT technique in the oral cavity for identification and differentiation between free and attached gingiva, as well as determining the gingival phenotype, an important factor to determination of periodontal prognosis in patients. For the animal studies, five porcine jaws were analyzed using a Swept Source SS-OCT system operating at 1325nm and stereomicroscope, as gold pattern. The SS-OCT at 1325nm was chosen due to the longer central wavelength, that allows to deeper penetration imaging, and the faster image acquisition, an essential factor for clinical setting. For the patient studies, a total of 30 males and female were examined using the SS-OCT at 1325nm and computer controlled periodontal probing. 2D and 3D images of tooth/gingiva interface were performed, and quantitative measurements of the gingival sulcus could be noninvasively obtained. Through the image analysis of the animals jaws, it was possible to quantify the free gingiva and the attached gingiva, the calculus deposition over teeth surface and also the subgingival calculus. For the patient's studies, we demonstrated that the gingival phenotype could be measured without the periodontal probe introduction at the gingival sulcus, confirming that OCT can be potentially useful in clinic for direct observation and quantification of gingival phenotype in a non-invasive approach.
机译:成像方法广泛用于诊断和模式的多样性,如今,光学相干断层扫描(OCT)在商业上可获得并被认为是医疗和非医疗应用中的成像应用的最具创新性技术。在这项研究中,我们利用了口腔中的OCT技术进行了鉴定和附着的牙龈之间的鉴定和分化,以及确定牙龈表型,确定患者牙周预后的重要因素。对于动物研究,使用在1325nm和立体显微镜下运行的扫掠源SS-OCT系统进行分析五种猪钳口,如金色图案。选择了1325nm的SS-OCT由于中心波长越长,允许更深的渗透成像,以及更快的图像采集,临床环境的必要因素。对于患者的研究,使用SS-OCT在1325nm和计算机控制的牙周探测中检查总共30个男性和女性。进行2D和3D图像的牙齿/牙龈接口的图像,并且可以非侵入地获得牙龈龈龈硫的定量测量。通过对动物钳口的图像分析,可以量化自由的牙龈和附着的牙龈,牙齿表面的差分沉积以及龈下微积分。对于患者的研究,我们证明可以在没有牙周病的牙龈抑制的情况下测量牙龈表型,确认OCT可以在临床上用于直接观察和定量牙龈表型以非侵入性的方法。

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