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Optical imaging of early dental caries in deciduous teeth with near-IR light at 1310nm.

机译:用1310nm的近红外光对乳牙中早期龋齿的光学成像。

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摘要

ental caries is a widespread disease that affects many children. Through a concerted effort by the parents, dentist, and child, the decay process can be arrested/reversed by non-surgical means via fluoride therapy, antimicrobial rinses, dietary changes, or low-intensity laser irradiation. However, success of these preventative measures depends to a great extent on the early detection of the decay process. Traditionally, dentists have utilized tactile and visual techniques to detect caries, but unfortunately these methods have a low sensitivity. Conventional radiography (x-rays) is adequate for large, cavitated lesions; however, it does not have sufficient sensitivity for the detection of early, non-cavitated caries, root surface caries, or secondary caries. Moreover, due to the distinct morphology of the primary dentition, including thin enamel, proportionally thinner dentin, and large pulp chambers, the progression of caries is intensified. Therefore, new methods for early caries detection are necessary. Recently, new technology has been approved for the diagnosis of decay, e.g. the DIAGNOdent and QLF, but these devices detect caries in its late stages when surgical intervention is usually necessary. Moreover, these devices do not provide depth-resolved images of the caries and therefore, cannot be used to assess the effectiveness of properly implemented preventative measures.;Polarization-sensitive optical coherence tomography (PS-OCT) is a non-invasive imaging technique which utilizes near-infrared (NIR) light to produce depth-resolved images of dental enamel and has the potential to monitor early enamel caries. The scattering of light in the sound enamel and dentin is sufficiently strong in the visible range to obscure light transmission through the tooth. However, in the near-IR at 1310nm, enamel is highly transparent. The tissue contrast with devices utilizing near-IR light arises from changes in tissue scattering as opposed to conventional radiography, which is based on variations in tissue density. Therefore, this method can be more sensitive than x-rays in detecting early caries lesions25.;The potential of NIR imaging of early caries lesions in primary teeth has not been investigated. These methods do not require exposure to ionizing radiation, deciduous teeth are smaller and more accessible, and the dentist can avoid the difficult procedure of placing x-ray films in uncooperative children. However, primary teeth differ in composition and structure from the permanent dentition and therefore, their optical properties are expected to be different.;The overall objective of this research is to develop non-invasive optical devices for the detection and diagnosis of early dental caries in deciduous teeth. The objectives of this study will be achieved through the following specific aims: AIM
机译:龋齿是一种影响许多儿童的普遍疾病。通过父母,牙医和孩子的共同努力,可以通过非手术手段通过氟化物疗法,抗菌冲洗,饮食变化或低强度激光照射来阻止/逆转衰变过程。但是,这些预防措施的成功在很大程度上取决于对衰减过程的早期检测。传统上,牙医利用触觉和视觉技术来检测龋齿,但是不幸的是,这些方法灵敏度较低。常规放射线照相(x射线)足以应付大的空洞性病变。但是,它对于检测早期,非空洞的龋齿,根表面龋齿或继发性龋齿没有足够的灵敏度。此外,由于主牙列的独特形态,包括稀薄的牙釉质,成比例的稀薄牙本质和大的牙髓腔,龋齿的进展加剧了。因此,早期龋病检测的新方法是必要的。最近,已经批准了用于诊断衰变的新技术,例如用于医学领域的衰变。是DIAGNOdent和QLF,但是这些设备在通常需要手术干预的晚期才可以检测到龋齿。而且,这些设备不能提供龋齿的深度分辨图像,因此不能用于评估正确实施的预防措施的有效性。极化敏感光学相干断层扫描(PS-OCT)是一种非侵入性成像技术,利用近红外(NIR)光生成牙釉质的深度分辨图像,并具有监测早期牙釉质龋齿的潜力。声音珐琅质和牙本质中的光散射在可见光范围内足够强,可以遮挡通过牙齿的光传输。但是,在1310nm的近红外下,搪瓷是高度透明的。与利用近红外光的设备形成的组织对比是由组织散射的变化引起的,这与基于组织密度变化的常规射线照相相反。因此,该方法在检测早期龋齿病变方面比X射线更为灵敏25。尚未研究乳牙早期龋齿病变的NIR成像潜力。这些方法不需要暴露于电离辐射下,乳齿更小且更容易接近,并且牙医可以避免在不合作的儿童中放置X射线胶片的困难过程。然而,乳牙的组成和结构与恒牙不同,因此,它们的光学特性预计会有所不同。这项研究的总体目标是开发用于检测和诊断早期龋齿的非侵入性光学设备。乳牙。本研究的目标将通过以下具体目标实现:AIM

著录项

  • 作者

    Pena, William A.;

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Health Sciences Dentistry.
  • 学位 M.S.
  • 年度 2009
  • 页码 51 p.
  • 总页数 51
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

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