Characterization of Microarchitectures, Stiffness and Strength of Human Trabecular Bone Using Micro-Computed Tomography (Micro-CT) Scans

SPG biomed Pub Date : 2023-01-19 DOI:10.3390/biomed3010007
A. El-Gizawy, Xuewei Ma, F. Pfeiffer, J. Schiffbauer, T. Selly
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引用次数: 3

Abstract

The present work presents evaluation and experimental verification of the use of X-ray computed tomographic microscopy (micro-CT) for accurate characterization of geometry, microarchitecture, and stiffness properties of bones. These properties are crucial for designing and building optimized implants for joint and dental reconstruction applications. High-resolution micro-CT scans would provide more detailed and accurate information about the microarchitecture and density distribution across patient bones. Nevertheless, micro-CT applications on live patients require invasive procedures involving small bone biopsy specimens. Alternatively, micro-CT could be used on samples collected from selected cadavers of different age, gender, and race groups to establish a database that could be used for providing useful microarchitecture information. The micro-CT scans of investigated bone samples reveal that the trabecular bone is anisotropic and heterogeneous. The results also showed considerable degree of parametric variability and uncertainty on microarchitecture and stiffness properties of patient’s trabecular bone.
用微计算机断层扫描(Micro-CT)表征人类小梁骨的微结构、刚度和强度
本研究评估和实验验证了使用x射线计算机断层显微镜(micro-CT)准确表征骨骼的几何形状、微结构和刚度特性。这些特性对于设计和构建用于关节和牙齿重建应用的优化种植体至关重要。高分辨率微ct扫描将提供有关患者骨骼微结构和密度分布的更详细和准确的信息。然而,显微ct在活体患者上的应用需要涉及小骨活检标本的侵入性手术。另外,micro-CT可以用于采集不同年龄、性别和种族的尸体样本,以建立一个数据库,用于提供有用的微结构信息。骨样品的显微ct扫描显示骨小梁具有各向异性和非均质性。结果还显示了相当程度的参数可变性和不确定性的微结构和刚度特性的患者小梁骨。
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