Huang Tiffany T Y, Jones Allan S, He Li Hong, Darendeliler M Ali, Swain Michael V
Biomaterials Science Research Unit, Faculty of Dentistry, University of Sydney, NSW, Australia.
J Dent. 2007 Sep;35(9):737-43. doi: 10.1016/j.jdent.2007.06.001. Epub 2007 Aug 1.
The aim of this study was to characterise the mineral density (MD) of natural enamel white spot lesions (WSLs) using X-ray micro-tomography calibrated with different density hydroxyapatite phantoms.
Seven natural WSLs from four extracted non-carious premolar teeth were scanned at a voxel size of 7.6 microm using a desktop X-ray micro-tomography system. Five hydroxyapatite phantoms (sintered pellets of hydroxyapatite powder) with densities ranging from 1.52 to 3.14 g/cm(3) were used as calibration standards for each scan. Three-dimensional image reconstruction enabled MD gradients throughout the lesion to be quantified using an MD calibration equation derived from hydroxyapatite phantoms. Background noise generated during the measurement of MD was reduced using a Gaussian filter.
Gaussian filter reduced the signal-to-noise ratio (standard deviation) significantly while the basic MD information (average value) remained intact. The mineral gradients through the WSLs examined were compared and are discussed in terms of existing literature. The MD of sound enamel, apparent intact surface layer of WSL, and lowest level of WSL was found to be 2.65-2.89 g/cm(3), 2.23-2.58 g/cm(3) and 1.48-2.03 g/cm(3), respectively. Our MD results are comparable with other studies.
X-ray micro-tomography is a sensitive in vitro technique capable of characterising and quantifying MD of small non-cavitated WSLs. This method has a promising potential for future carious and quantitative remineralisation studies.
本研究的目的是使用用不同密度羟基磷灰石模型校准的X射线显微断层扫描来表征天然牙釉质白斑病变(WSLs)的矿物质密度(MD)。
使用台式X射线显微断层扫描系统,以7.6微米的体素大小对来自四颗拔除的非龋前磨牙的七个天然WSLs进行扫描。五个密度范围为1.52至3.14 g/cm³的羟基磷灰石模型(羟基磷灰石粉末的烧结颗粒)用作每次扫描的校准标准。三维图像重建能够使用从羟基磷灰石模型导出的MD校准方程对整个病变的MD梯度进行量化。使用高斯滤波器降低MD测量过程中产生的背景噪声。
高斯滤波器显著降低了信噪比(标准偏差),而基本的MD信息(平均值)保持不变。比较了所检查的WSLs的矿物质梯度,并根据现有文献进行了讨论。发现健康牙釉质、WSLs表面明显完整层和WSLs最低水平的MD分别为2.65 - 2.89 g/cm³、2.23 - 2.58 g/cm³和1.48 - 2.03 g/cm³。我们的MD结果与其他研究相当。
X射线显微断层扫描是一种敏感的体外技术,能够表征和量化小的非空洞性WSLs的MD。该方法在未来的龋齿和定量再矿化研究中具有广阔的潜力。