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Observation and determination of periodontal tissue profile using optical coherence tomography

机译:光学相干断层扫描观察和测定牙周组织谱

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摘要

Background and Objective Diagnosis is a crucial step in periodontal treatment. The aim of this study was to evaluate the effectiveness of optical coherence tomography ( OCT ) for observation and determination of periodontal tissue profiles in vivo. Material and Methods In experiment 1, refractive indices of purified water, porcine gingiva and human gingiva at 1330?nm were determined for the analysis of OCT images of periodontal tissues. In experiment 2, OCT examination was performed in the midlabial apico‐coronal plane of mandibular anteriors in 30 Asian volunteers with healthy gingiva. Sulcus depth was measured on intra‐oral photographs taken during probing. In the OCT images, the gingival, epithelial and connective tissue thickness, and the position of alveolar bone crest were determined and finally, the biologic width was measured. Results Refractive indices of purified water, porcine gingiva and human gingiva were 1.335, 1.393 and 1.397, respectively. Cross‐sectional images of gingival epithelium, connective tissue and alveolar bone were depicted in real‐time. The sulcular and junctional epithelium could be visualized occasionally. Laser penetration and reflection were limited to a certain depth with an approximate maximal imaging depth capability of 1.5?mm and OCT images of the periodontal structure were not clear in some cases. The average maximal thickness of gingiva and epithelium and biologic width at the mandibular anteriors were 1.06?±?0.21, 0.49?±?0.15 and 2.09?±?0.60?mm, respectively. Conclusion OCT has promise for non‐invasive observation of the periodontal tissue profile in detail and measurement of internal periodontal structures including biologic width in the anterior region.
机译:背景和客观诊断是牙周治疗的关键步骤。该研究的目的是评估光学相干断层扫描(OCT)的有效性,用于观察和测定体内牙周组织谱的目的。实验1中的材料和方法1,测定纯净水,猪脊肽和人静脉的折射率为1330〜NM的牙周组织的OCT图像分析。在实验2中,OCT检查在30名亚洲志愿者的颌骨前冠状冠状平面中进行了健康的Gingiva。在探测期间拍摄的口腔内照片上测量硫磺深度。在OCT图像中,测定牙龈,上皮和结缔组织厚度和肺泡骨嵴的位置,最后,测量生物宽度。结果净化水,猪牙龈和人床的折射率分别为1.335,1.393和1.397。实时描绘了牙龈上皮,结缔组织和肺泡骨的横截面图像。偶尔可以可视化磺化和结骨。激光穿透和反射限制为一定的深度,近似最大成像深度能力为1.5Ωmm,在某些情况下,牙周结构的OCT图像尚不清楚。下颌前叶片和上皮的平均最大厚度和下颌前叶片的生物宽度为1.06≤0.21,0.49?±0.15和2.09?±0.60?mm。结论10月份有望详细地对牙周组织概况的非侵入性观察和测量内部牙周结构,包括前部区域的生物宽度。

著录项

  • 来源
    《Journal of periodontal research》 |2018年第2期|共12页
  • 作者单位

    Department of PeriodontologyTokyo Medical and Dental University (TMDU)Tokyo Japan;

    Department of PeriodontologyTokyo Medical and Dental University (TMDU)Tokyo Japan;

    Department of PeriodontologyTokyo Medical and Dental University (TMDU)Tokyo Japan;

    Department of PeriodontologyTokyo Medical and Dental University (TMDU)Tokyo Japan;

    Department of PeriodontologyTokyo Medical and Dental University (TMDU)Tokyo Japan;

    Department of PeriodonticsSri Sankara Dental CollegeVarkala Kerala India;

    Department of Restorative DentistryUniversity of Washington School of DentistrySeattle WA USA;

    Oral Diagnosis and General DentistryTokyo Medical and Dental University (TMDU)Tokyo Japan;

    Center of Advanced Medicine for Dental and Oral Diseases National Center for Geriatrics and;

    Department of PeriodontologyTokyo Medical and Dental University (TMDU)Tokyo Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

    biologic width; diagnostic imaging; gingival thickness; optical coherence; periodontium; tomography;

    机译:生物学宽度;诊断成像;牙龈厚度;光学相干;课程;断层扫描;

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