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MicroCT and Optical Coherence Tomography imagistic assessment of the dental roots adhesive

机译:MicroCT和光学相干断层扫描成像牙根粘合剂的想象评估

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Several obturation methods are available today to study the 3D filling of the root canal. There are also several methods capable to evaluate the ability to seal apically the root canals. However, the common methods of investigation are invasive; they also lead to the destruction of the samples. If the sectioning differs slightly from the desired area, the investigation is non-conclusive regarding the micro-leakages. Also, although the use of Cone-Beam Micro Computer Tomography (CBCT) appears to be most promising for endodontic purposes, its effective radiation doses are higher than with conventional intra-oral and panoramic imaging. In contrast, enface (ef) Optical Coherence Tomography (OCT) proves to be efficient for the investigation of material defects of dental restorations, dental materials, and micro-leakage at the interfaces, where the penetration depth depends on the material. Therefore, ef OCT has been proposed in our studies as a potential tool for in vivo endodontic imaging. Twenty five recently extracted human maxillary molars were selected for the study for caries or periodontal reasons. The pulp chambers were completely opened, the dental pulp was removed, and the root canals were shaped. Silver nanoparticles were used in half of the samples in order to increase the scattering of the adhesive material in comparison with the dental roots walls. The sample teeth were then probed using Time Domain (TD) OCT working at 1300 nm. A synchrotron radiation X-Ray microCT experiment was also performed. The imagistic results pointed out the efficiency of the silver nanoparticle layer used in order to increase the scattering of the root canal adhesive scattering for the OCT non-invasive investigation. MicroCT allowed for obtaining qualitative data related to the depth penetration of the root canal adhesive into the dentin walls.
机译:今天可以获得几种获取方法来研究根管的3D填充。还有几种方法能够评估根部划线的能力。但是,常见的调查方法是侵入的;他们也导致样品的破坏。如果切片与所需区域略微不同,则对微泄漏的调查是非定性的。此外,尽管使用锥形光束微型计算机断层扫描(CBCT)对于牙髓性目的最有前途,但其有效的辐射剂量高于常规口腔口腔和全景成像。相反,ENFACE(EF)光学相干断层扫描(OCT)证明是牙科修复,牙科材料和界面微泄漏的材料缺陷的有效,其中穿透深度取决于材料。因此,EFO10已经在我们的研究中提出作为体内胸腺成像的潜在工具。最近提取的二十五个最近提取的人上颌臼齿用于研究龋齿或牙周原因。纸浆室完全打开,除去牙科纸浆,根系成形。银纳米颗粒用于一半的样品,以增加粘合材料的散射与牙根壁相比。然后使用在1300nm工作的时域(Td)10月探测样品牙齿。还进行了同步辐射X射线MicroCT实验。成想结果指出了使用的银纳米粒子层的效率,以增加八月无侵入性研究的根管粘合散射散射。 Microct允许获得与根管粘合剂的深度渗透相关的定性数据进入牙本质壁。

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