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A construction of standardized near infrared hyper-spectral teeth database - a first step in the development of reliable diagnostic tool for quantification and early detection of caries

机译:建立标准化的近红外高光谱牙齿数据库-开发可靠的定量和早期检测龋齿诊断工具的第一步

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Dental caries is a disease characterized by demineralization of enamel crystals leading to the penetration of bacteria into the dentin and pulp. If left untreated, the disease can lead to pain, infection and tooth loss. Early detection of enamel demineralization resulting in increased enamel porosity, commonly known as white spots, is a difficult diagnostic task. Several papers reported on near infrared (NIR) spectroscopy to be a potentially useful noninvasive spectroscopic technique for early detection of caries lesions. However, the conducted studies were mostly qualitative and did not include the critical assessment of the spectral variability of the sound and carious dental tissues and influence of the water content. Such assessment is essential for development and validation of reliable qualitative and especially quantitative diagnostic tools based on NIR spectroscopy. In order to characterize the described spectral variability, a standardized diffuse reflectance hyper-spectral database was constructed by imaging 12 extracted human teeth with natural lesions of various degrees in the spectral range from 900 to 1700 nm with spectral resolution of 10 nm. Additionally, all the teeth were imaged by digital color camera. The influence of water content on the acquired spectra was characterized by monitoring the teeth during the drying process. The images were assessed by an expert, thereby obtaining the gold standard. By analyzing the acquired spectra we were able to accurately model the spectral variability of the sound dental tissues and identify the advantages and limitations of NIR hyper-spectral imaging.
机译:龋齿是一种疾病,其特征在于搪瓷晶体的脱矿质,导致细菌渗透到牙本质和牙髓中。如果不及时治疗,该疾病可能导致疼痛,感染和牙齿脱落。牙釉质脱矿质的早期检测导致牙釉质孔隙率增加,通常被称为白点,是一项困难的诊断任务。近几篇论文报道了近红外(NIR)光谱技术是一种可能有用的无创光谱技术,可用于早期发现龋齿。然而,所进行的研究大多是定性的,没有包括对健全和龋齿的牙齿组织的光谱变异性以及水含量影响的严格评估。这种评估对于开发和验证基于近红外光谱的可靠的定性尤其是定量诊断工具至关重要。为了表征所描述的光谱可变性,通过对12个提取的人类牙齿进行成像来构建标准化的漫反射高光谱数据库,该人类牙齿在900到1700 nm的光谱范围内具有不同程度的自然损伤,光谱分辨率为10 nm。另外,所有牙齿均通过数字彩色相机成像。通过在干燥过程中监测牙齿来表征含水量对采集光谱的影响。图像由专家评估,从而获得黄金标准。通过分析采集的光谱,我们能够准确地模拟声音牙齿组织的光谱变异性,并确定NIR高光谱成像的优点和局限性。

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