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3D visualization and quantification of bone and teeth mineralization for the study of osteo/dentinogenesis in mice models

机译:骨骼和牙齿矿化的3D可视化和定量,用于研究小鼠模型中的骨/牙本质发生

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Research on bone and teeth mineralization in animal models is critical for understanding human pathologies. Genetically modified mice represent highly valuable models for the study of osteo/dentinogenesis defects and osteoporosis. Current investigations on mice dental and skeletal phenotype use destructive and time consuming methods such as histology and scanning microscopy. Micro-CT imaging is quicker and provides high resolution qualitative phenotypic description. However reliable quantification of mineralization processes in mouse bone and teeth are still lacking. We have established novel CT imaging-based software for accurate qualitative and quantitative analysis of mouse mandibular bone and molars. Data were obtained from mandibles of mice lacking the Fibromodulin gene which is involved in mineralization processes. Mandibles were imaged with a micro-CT originally devoted to industrial applications (Viscom, X8060 NDT). 3D advanced visualization was performed using the VoxBox software (UsefulProgress) with ray casting algorithms. Comparison between control and defective mice mandibles was made by applying the same transfer function for each 3D data, thus allowing to detect shape, colour and density discrepencies. The 2D images of transverse slices of mandible and teeth were similar and even more accurate than those obtained with scanning electron microscopy. Image processing of the molars allowed the 3D reconstruction of the pulp chamber, providing a unique tool for the quantitative evaluation of dentinogenesis. This new method is highly powerful for the study of oro-facial mineralizations defects in mice models, complementary and even competitive to current histological and scanning microscopy appoaches.
机译:动物模型中骨骼和牙齿矿化的研究对于理解人类病理至关重要。转基因小鼠代表了用于研究骨/牙本质缺陷和骨质疏松症的极有价值的模型。当前对小鼠牙齿和骨骼表型的研究使用破坏性且耗时的方法,例如组织学和扫描显微镜检查。 Micro-CT成像速度更快,并提供高分辨率的定性表型描述。但是,仍缺乏对小鼠骨骼和牙齿矿化过程的可靠定量。我们已经建立了新颖的基于CT成像的软件,可以对小鼠下颌骨和臼齿进行准确的定性和定量分析。数据是从缺乏参与矿化过程的纤维调节蛋白基因的小鼠的下颌骨中获得的。下颌骨使用最初专门用于工业应用的微型CT(Viscom,X8060 NDT)成像。使用带有射线投射算法的VoxBox软件(UsefulProgress)进行了3D高级可视化。通过对每个3D数据应用相同的传递函数,进行了对照小鼠和下颌小鼠下颌骨的比较,从而可以检测形状,颜色和密度差异。下颌骨和牙齿的横向切片的2D图像与扫描电子显微镜所获得的图像相似,甚至更为精确。臼齿的图像处理可以对牙髓腔进行3D重建,从而为牙本质生成的定量评估提供了独特的工具。这种新方法对于研究小鼠模型中的口腔面部矿化缺陷非常有力,与当前的组织学和扫描显微镜方法相辅相成甚至具有竞争力。

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