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Fiber-reinforced composite analysis using optical coherence tomography after mechanical and thermal cycling

机译:机械和热循环后光学相干断层扫描的纤维增强复合分析

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Fiber-reinforced composites are new materials which have been used for a variety of dental applications, including tooth splinting, replacement of missing teeth, treatment of dental emergencies, reinforcement of resin provisional fixed prosthodontic restorations, orthodontic retention, and other clinical applications. Different fiber types are available, but little clinical information has been disseminated. The traditional microscopy investigation, most commonly used to study this material, is a destructive technique, which requires specimen sectioning and are essentially surface measurements. On the basis of these considerations, the aim of this research is to analyze the interior of a dental sample reinforced with fiber after a mechanical and thermal cycling to emulate oral conditions using optical coherence tomography (OCT). The device we are using is a home built Fourier domain OCT working at 800 nm with 6 μm resolution. The results are compared with microscopy images to validate OCT as a working method. In long term, fractures allow bacterial invasion provoking plaque and calculus formation that can cause caries and periodontal disease. Therefore, non invasive imaging of the bridge fiber enables the possibility of periodic clinical evaluation to ensure the patient health. Furthermore, OCT images can provide a powerful method for quantitative analysis of crack propagation, and can potentially be used for in vivo assessment.
机译:纤维增强复合材料是用于各种牙科应用的新材料,包括牙齿夹板,缺失牙齿的更换,牙齿紧急情况的治疗,树脂临时固定的假期修复,正畸潴留和其他临床应用。提供不同的光纤类型,但很少发散临床信息。传统的显微镜调查,最常用于研究这种材料,是一种破坏性技术,需要试样切片并且基本上是表面测量。在这些考虑因素的基础上,该研究的目的是在机械和热循环后分析纤维增强的牙科样品的内部,以使用光学相干断层扫描(OCT)来模拟口腔条件。我们使用的设备是一个家庭建立的傅立叶域10月,工作在800nm,分辨率为6μm。将结果与显微镜图像进行比较,以验证OCT作为工作方法。长期来看,骨折允许细菌侵袭引发斑块和微积分,这会导致龋齿和牙周病。因此,桥光纤的非侵入性成像使得周期性临床评估能够确保患者健康。此外,OCT图像可以提供用于定量分析裂纹繁殖的强大方法,并且可能在体内评估中使用。

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