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Polarization-sensitive optical coherence tomographic imaging of artificial demineralization on exposed surfaces of tooth roots

机译:牙根裸露表面上人工脱盐的偏振敏感光学相干断层扫描成像

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Background and objectives. The purpose of this study was to assess the potential of polarization-sensitive optical coherence tomography (PS-OGT) to non-destructively measure the depth and severity of artificial demineralization on exposed root surfaces and measure the degree of inhibition by topical fluoride. Although PS-OCT imaging studies have demonstrated the utility of PS-OCT for imaging carious lesions on enamel and dentin surfaces the influence of the cementum layer that is present on intact root surfaces has not been investigated.rnMaterials and methods. In this study, extracted human tooth roots were partitioned into three sections with one partition treated with topical fluoride, one partition protected from demineralization with acid resistant varnish, and one partition exposed to a demineralization solution, producing artificial lesions approximately 200-μm deep in root dentin. The lesion depth, remaining cementum thickness and the integrated reflectivity for lesion areas were measured with PS-OCT. These measurements were also compared with more established methods of measuring demineralization, namely transverse microradiography (TMR) and polarized light microscopy (PLM).rnResults. PS-OCT was able to measure a significant increase in the reflectivity between lesion areas and sound root surfaces. In contrast to dentin, the cementum layer manifests minimal reflectivity in the PS-OCT images allowing non-destructive measurement of the remaining cementum thickness. The reflectivity of the cementum layer did not increase significantly after substantial demineralization, however it did manifest considerable shrinkage in a fashion similar to dentin and that shrinkage could be measured with OCT.rnSignificance. This study demonstrates that PS-OCT can be used to measure demineralization non-destructively on root surfaces and assess inhibition of demineralization by anti-caries agents.
机译:背景和目标。这项研究的目的是评估偏振敏感光学相干断层扫描(PS-OGT)潜力,以无损测量裸露的根表面上人工脱盐的深度和严重程度,并测量局部氟化物的抑制程度。尽管PS-OCT成像研究已证明PS-OCT可用于对牙釉质和牙本质表面上的龋齿病变进行成像,但尚未研究完整牙根表面上牙骨质层的影响。材料和方法。在这项研究中,将提取的人牙根分为三个部分,其中一个分区用局部氟化物处理,一个分区用耐酸清漆保护以防脱盐,而另一分区暴露在脱盐溶液中,在根部产生约200μm的人工损伤牙本质。使用PS-OCT测量病变深度,残留牙骨质厚度和病变区域的综合反射率。这些测量结果还与更成熟的测量脱矿质的方法进行了比较,即横向显微放射照相(TMR)和偏振光显微镜(PLM)。 PS-OCT能够测量出病变区域和根部健全表面之间反射率的显着提高。与牙本质相比,牙骨质层在PS-OCT图像中表现出最小的反射率,从而可以无损测量剩余的牙骨质厚度。牙本质层脱矿后牙骨质层的反射率没有显着增加,但是它确实以类似于牙本质的方式表现出明显的收缩,并且可以使用OCT测量收缩率。这项研究表明,PS-OCT可用于非破坏性地测量牙根表面的脱矿质和评估抗龋药对脱矿质的抑制作用。

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