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Dental Imaging Using Mesoscopic Fluorescence Molecular Tomography: An ex Vivo Feasibility Study

机译:使用介观荧光分子层析成像的牙科成像:一项体外可行性研究

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摘要

Some dental lesions are difficult to detect with traditional anatomical imaging methods, such as, with visual observation, dental radiography and X-ray computed tomography (CT). Therefore, we investigated the viability of using an optical imaging technique, Mesoscopic Fluorescence Molecular Tomography (MFMT) to retrieve molecular contrast in dental samples. To establish feasibility of obtaining 3-D images in teeth using MFMT, molecular contrast was simulated using a dye-filled capillary that was placed in the lower half of human tooth ex vivo. The dye and excitation wavelength were chosen to be excited at 650–660 nm in order to simulate a carious lesion. The location of the capillary was varied by changing the depth from the surface at which the dye, at various concentrations, was introduced. MFMT reconstructions were benchmarked against micro-CT. Overall; MFMT exhibited a location accuracy of ~15% and a volume accuracy of ~15%, up to 2 mm depth with moderate dye concentrations. These results demonstrate the potential of MFMT to retrieve molecular contrast in 3-D in highly scattering tissues, such as teeth.
机译:传统的解剖学成像方法难以检测到某些牙齿病变,例如,通过视觉观察,牙科放射线照相和X射线计算机断层扫描(CT)。因此,我们研究了使用光学成像技术(介观荧光分子断层扫描(MFMT))在牙齿样品中检索分子对比的可行性。为了建立使用MFMT在牙齿中获取3-D图像的可行性,使用了染染料填充的毛细管模拟了分子对比,该毛细管被放置在离体人类牙齿的下半部分。选择染料和激发波长以在650–660 nm激发,以模拟龋损。通过改变从引入各种浓度染料的表面的深度来改变毛细管的位置。 MFMT重建以微型CT为基准。总体; MFMT的定位精度约为15%,体积精度约为15%,在中等染料浓度下,深度可达2 mm。这些结果证明了MFMT在高度分散的组织(例如牙齿)中以3-D检索分子对比的潜力。

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