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A robust methodology for the quantitative assessment of the rat jawbone microstructure

机译:定量评估大鼠颌骨微结构的可靠方法

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摘要

Micro-computed tomography can be applied for the assessment of the micro-architectural characteristics of the cortical and trabecular bones in either physiological or disease conditions. However, reports often lack a detailed description of the methodological steps used to analyse these images, such as the volumes of interest, the algorithms used for image filtration, the approach used for image segmentation, and the bone parameters quantified, thereby making it difficult to compare or reproduce the studies. This study addresses this critical need and aims to provide standardized assessment and consistent parameter reporting related to quantitative jawbone image analysis. Various regions of the rat jawbones were screened for their potential for standardized micro-computed tomography analysis. Furthermore, the volumes of interest that were anticipated to be most susceptible to bone structural changes in response to experimental interventions were defined. In the mandible, two volumes of interest were selected, namely, the condyle and the trabecular bone surrounding the three molars. In the maxilla, the maxillary tuberosity region and the inter-radicular septum of the second molar were considered as volumes of interest. The presented protocol provides a standardized and reproducible methodology for the analysis of relevant jawbone volumes of interest and is intended to ensure global, accurate, and consistent reporting of its morphometry. Furthermore, the proposed methodology has potential, as a variety of rodent animal models would benefit from its implementation.
机译:微型计算机断层扫描可用于评估生理或疾病条件下皮质和小梁骨的微结构特征。但是,报告通常缺乏对用于分析这些图像的方法步骤的详细描述,例如感兴趣的体积,用于图像过滤的算法,用于图像分割的方法以及量化的骨骼参数,因此难以进行分析。比较或复制研究。这项研究解决了这一关键需求,旨在提供与定量颌骨图像分析有关的标准化评估和一致的参数报告。筛选了大鼠颌骨的各个区域,以便进行标准化的微型计算机断层扫描分析。此外,定义了预期对实验干预最敏感的骨结构变化的目标体积。在下颌骨中,选择了两个感兴趣的体积,即surrounding骨和围绕三个磨牙的小梁骨。在上颌骨中,第二磨牙的上颌结节区域和根尖间间隔被视为感兴趣的体积。提出的协议为相关的感兴趣的颚骨体积分析提供了一种标准化且可重现的方法,旨在确保对其形态学进行整体,准确和一致的报告。此外,所提出的方法具有潜力,因为各种啮齿动物模型将从其实施中受益。

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