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3D Reconstructions of resin dental fillings based on en face OCT images

机译:基于面部OCT图像的树脂牙科填充物的3D重建

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Optical tomographic techniques are of particular importance in the medical imaging field, because these techniques can provide non-invasive diagnostic images. In the present study, en-face optical coherence tomography (efOCT) was used as a non-invasive high resolution imaging method for supplying the necessary information on the quality of dental hard tissues and coronal composite resin fillings. Teeth after being subject to several treatment methods are imaged in order to asses the material defects and micro-leakage of tooth-filling interface as well as to evaluate the quality of dental hard tissue. C-scan and B-scan OCT images are acquired from a large range of samples. Based on such images, 3D reconstructions were assembled, which lead to a better view of the investigated areas. Cracks and voids in the dental structures as well as material defects and gaps at the interfaces arc clearly exposed. The advantages of the OCT imaging method consist in non-invasiveness and high resolution. The en-face OCT offers the user the possibility of rapidly acquiring sequential B-scans and C-scans by switching the instrument between the two regimes. Sequential and rapid switching between the en-face regime and the cross-section regime, specific for the en-face OCT systems, represent a significant advantage in the process of non-invasive imaging, as images with different orientations can be obtained using the same system, during the same imaging event. 3D reconstructions of volumes allow evaluation and localization of defects in the samples. By importing such data into numerical simulation software can provide answers on the behavior of the investigated structures.
机译:光学层析成像技术在医学成像领域特别重要,因为这些技术可以提供非侵入性的诊断图像。在本研究中,使用面部光学相干断层扫描(efOCT)作为无创高分辨率成像方法,以提供有关牙齿硬组织和冠状复合树脂填充物质量的必要信息。对经过多种处理方法的牙齿成像,以评估材料缺陷和充盈界面的微渗漏,并评估牙齿硬组织的质量。从大量样本中获取C扫描和B扫描OCT图像。基于这些图像,可以组装3D重建图像,从而可以更好地查看所研究的区域。牙齿结构中的裂缝和空隙以及界面处的材料缺陷和间隙都清晰可见。 OCT成像方法的优势在于无创性和高分辨率。通过在两种状态之间切换仪器,en-face OCT为用户提供了快速获取顺序B扫描和C扫描的可能性。面向面部OCT系统的面式和截面式之间的连续快速切换代表了非侵入性成像过程中的显着优势,因为可以使用相同的方向获得具有不同方向的图像系统在同一成像事件期间。体积的3D重建可以评估和定位样品中的缺陷。通过将此类数据导入数值模拟软件,可以提供有关所研究结构行为的答案。

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