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1950纳米波长下氟斑牙的脱水成像

Dehydration imaging of dental fluorosis at 1950 nm.

作者信息

Kashirtsev Filipp, Tressel John, Fried Daniel

机构信息

University of California, San Francisco, San Francisco, CA 94143-0758.

出版信息

Proc SPIE Int Soc Opt Eng. 2022 Jan-Feb;11942. doi: 10.1117/12.2608283. Epub 2022 Mar 4.

Abstract

Dental fluorosis is an increasing problem in the U.S. due to excessive exposure to fluoride from the environment. Fluorosis causes hypomineralization of the enamel during tooth development and mild fluorosis is visible as faint white lines on the tooth surface while the most severe fluorosis can result in pitted surfaces. It is difficult to differentiate lesions due to fluorosis from those due to caries. Dental fluorosis appears with extremely high contrast at short wavelength infrared (SWIR) wavelengths of 1450 and 1960 nm coincident with higher water absorption. In this study reflectance measurements at 1450 and 1950 nm were used to monitor the dehydration dynamics of lesions due to fluorosis on extracted teeth. The dehydration dynamics were compared with the lesion structure that was measured with microCT. Sixteen extracted teeth with suspected fluorosis were imaged and microCT showed that the mean surface zone thickness was 118 ± 30 μm and the lesion depth was 284 ± 105 μm for the areas of fluorosis investigated. The dehydration dynamics of lesions due to fluorosis appeared most similar to those of arrested caries lesions. There was no significant correlation (P >0.05) of the intensity change and rate of the intensity change at 1450 or 1950 nm with either the lesion surface zone thickness or the lesion depth.

摘要

由于环境中氟化物暴露过量,在美国,氟斑牙问题日益严重。氟斑牙在牙齿发育期间会导致牙釉质矿化不足,轻度氟斑牙表现为牙齿表面的细微白线,而最严重的氟斑牙会导致牙面出现凹坑。很难区分氟斑牙导致的病变和龋齿导致的病变。在1450和1960纳米的短波长红外(SWIR)波长下,氟斑牙出现时对比度极高,此时水吸收率更高。在本研究中,利用1450和1950纳米处的反射率测量来监测拔除牙齿上氟斑牙病变的脱水动态。将脱水动态与用微型计算机断层扫描(microCT)测量的病变结构进行比较。对16颗疑似氟斑牙的拔除牙齿进行成像,microCT显示,在所研究的氟斑牙区域,平均表面区域厚度为118±30微米,病变深度为284±105微米。氟斑牙病变的脱水动态与静止龋齿病变的脱水动态最为相似。在1450或1950纳米处,强度变化及其变化速率与病变表面区域厚度或病变深度均无显著相关性(P>0.05)。

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Dehydration imaging of dental fluorosis at 1950 nm.1950纳米波长下氟斑牙的脱水成像
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本文引用的文献

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