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Assessment of cavitation in artificial approximal dental lesions with near-IR imaging

机译:利用近红外成像评估人工近似牙齿病变中的空化

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Bitewing radiography is still considered state-of-the-art diagnostic technology for assessing cavitation within approximal carious dental lesions, even though radiographs cannot resolve cavitated surfaces but instead are used to measure lesion depth in order to predict cavitation. Clinicians need new technologies capable of determining whether approximal carious lesions have become cavitated because not all lesions progress to cavitation. Assessing lesion cavitation from near-infrared (NIR) imaging methods holds great potential due to the high transparency of enamel in the NIR region from λ=1300-1700-nm, which allows direct visualization and quantified measurements of enamel demineralization. The objective of this study was to measure the change in lesion appearance between non-cavitated and cavitated lesions in artificially generated lesions using NIR imaging modalities (two-dimensional) at λ=1300-nm and λ=1450-nm and cross-polarization optical coherence tomography (CP-OCT) (thee-dimensional) λ=1300-nm. Extracted human posterior teeth with sound proximal surfaces were chosen for this study and imaged before and after artificial lesions were made. A high speed dental hand piece was used to create artificial cavitated proximal lesions in sound samples and imaged. The cavitated artificial lesions were then filled with hydroxyapatite powder to simulate non-cavitated proximal lesions.
机译:咬合射线照相术仍被认为是评估近似龋齿病变内空化的最先进的诊断技术,即使放射线照片无法分辨空化的表面,而是用于测量病变深度以预测空化。临床医生需要能够确定近似龋齿病变是否已被空化的新技术,因为并非所有病变都会发展为空化。由于从λ= 1300-1700 nm的NIR区域中的牙釉质具有很高的透明度,因此评估近红外(NIR)成像方法引起的病变空化具有巨大的潜力,这可以直接观察和定量测量牙釉质脱矿质。这项研究的目的是使用λ= 1300-nm和λ= 1450-nm的NIR成像模式(二维)测量人工产生的病变中非空洞和空洞病变之间的病变外观变化相干断层扫描(CP-OCT)(三维)λ= 1300-nm。选择提取的具有良好近端表面的人后牙进行这项研究,并在进行人造病变之前和之后对其进行成像。使用高速牙科手机在声音样本中创建人造空化的近端病变并进行成像。然后将空化的人工病变填充羟基磷灰石粉末,以模拟非空化的近端病变。

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