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Multimodal Optical Detection of Early Childhood Caries

机译:幼儿龋病的多模式光学检测

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摘要

As prevalence of dental caries in children rises worldwide, there is an increasing need for a safe, easy to use and cost-effective technique to detect and identify childhood caries at an early stage where remineralization of the tooth is possible and damage may be reversed. It would be beneficial to have a noninvasive multimodal optical device for diagnosing early stage caries in vivo. In this research, the author develops and proposes an optical device which utilizes multiple modalities to screen for, and diagnose early stage dental caries. A clinical prototype device is developed and tested in a clinical setting to verify its suitability for in vivo use.;To develop a screening technique that can be used to alert the clinician to an area of suspected caries, an ultrathin scanning fiber endoscope (SFE) was used. Enhanced image resolution of tooth surfaces was obtained using a short-wavelength 405 nm illumination laser using the SFE. In addition, enamel with demineralization of varying depths were also imaged with 405 nm, 444 nm, 532 nm, and 635 nm illumination lasers. Contrast between sound and demineralized enamel was quantitatively computed for each imaging modality. For shallow demineralization, the image contrast with respect to sound enamel was greatest for the 405 nm reflected image. Furthermore, images obtained with a shallow penetration depth illumination laser (405 nm) provided the greatest detail of surface enamel topography since the reflected light does not contain contributions from light reflected from greater depths within the enamel tissue. Multilayered Monte Carlo simulations were also performed to confirm the experimental results.;To quantitatively determine health of the tooth enamel, the author developed a simple and robust autofluorescence (AF) technique that uses the dental AF spectra from 405 nm and 532 nm laser excitation and computes a ratio of the integrated areas of the spectra. The 405/532 nm AF ratio was obtained from healthy as well as unhealthy enamel regions of teeth. A clear distinction between the ratios for healthy enamel and unhealthy enamel was seen.;The author has developed a multimodal optical clinical prototype by combining the high contrast and high surface resolution SFE imaging modality with the quantitative AF modality. The device can be used to quickly image and screen for any signs of demineralized enamel by obtaining high-resolution and high-contrast surface images using a 405-nm laser as the illumination source, as well as obtaining autofluorescence and bacterial fluorescence images. When a suspicious region of demineralization is located, the device also performs dual laser fluorescence spectroscopy using 405-nm and 532-nm laser excitation. An autofluorescence ratio of the two excitation lasers is computed and used to quantitatively diagnose enamel health. The device was tested on in vivo patients as well as extracted teeth with clinically diagnosed carious lesions. The device was able to provide detailed images which highlighted the lesions identified by the clinicians. The autofluorescence spectroscopic ratios obtained from the extracted teeth successfully discriminated between sound and demineralized enamel.
机译:随着世界范围内儿童龋齿的患病率上升,人们越来越需要一种安全,易于使用且具有成本效益的技术,以在可能导致牙齿再矿化和损害可能逆转的早期阶段检测和识别儿童龋齿。具有非侵入性的多模态光学装置用于诊断体内早期龋齿将是有益的。在这项研究中,作者开发并提出了一种光学装置,该光学装置利用多种方式来筛查和诊断早期龋齿。开发了临床原型设备并在临床环境中进行了测试,以验证其在体内的适用性。为了开发一种可用于向临床医生警告可疑龋齿区域的筛查技术,一种超薄扫描纤维内窥镜(SFE)被使用了。使用SFE使用短波405 nm照射激光可获得增强的牙齿表面图像分辨率。此外,还用405 nm,444 nm,532 nm和635 nm照明激光器对具有不同深度的脱矿质的搪瓷成像。对于每种成像方式,定量计算了声音和脱矿质牙釉质之间的对比度。对于浅层脱矿质,对于405 nm反射图像,相对于声音搪瓷的图像对比度最大。此外,用浅穿透深度照明激光(405 nm)获得的图像提供了表面釉质形貌的最大细节,因为反射光不包含来自釉质组织内较大深度的反射光。为了验证实验结果,还进行了多层蒙特卡罗模拟。为了定量确定牙釉质的健康,作者开发了一种简单而强大的自发荧光(AF)技术,该技术使用了405 nm和532 nm激光激发的牙科AF光谱和计算光谱积分面积的比率。 405/532 nm AF比值来自牙齿的健康和不健康牙釉质区域。可以看到健康牙釉质和不健康牙釉质的比率之间有明显区别。作者通过结合高对比度和高表面分辨率SFE成像方式与定量AF方式,开发了一种多峰光学临床原型。通过使用405 nm激光作为照明源获得高分辨率和高对比度的表面图像,以及获得自发荧光和细菌荧光图像,该设备可用于快速成像和筛选脱矿质搪瓷的任何迹象。当找到可疑的脱盐区域时,该设备还将使用405-nm和532-nm激光激发进行双激光荧光光谱分析。计算两个激发激光器的自发荧光比率,并将其用于定量诊断牙釉质健康。该设备已在体内患者以及具有临床诊断出的龋齿病变的拔出牙齿上进行了测试。该设备能够提供详细的图像,突出显示由临床医生识别出的病变。从拔出的牙齿获得的自发荧光光谱比值成功地区分了声音和脱矿质牙釉质。

著录项

  • 作者

    Zhang, Liang.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Biomedical engineering.;Dentistry.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 72 p.
  • 总页数 72
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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