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DIRECT VISUALIZATION OF THE INITIATION AND PROGRESSION OF VERTEBRALFRACTURES

机译:椎骨 r n骨折的形成和发展的直接可视化

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Vertebral fractures are the hallmark of osteoporosis, yet the failure mechanisms involved in these fractures are not well understood. Failure patterns within whole vertebrae are typically estimated from finite element analyses or from images acquired after fracture has occurred. Experimental measurement of deformations sustained by vertebrae during injurious loading would enable direct visualization of vertebral failure mechanisms as well as the possibility of validating the results of numerical simulations of vertebral fracture. Time-lapsed micro-computed tomography (μCT) has been used previously to visualize failure processes in excised specimens of trabecular bone [1,2], and methods of digital volume correlation (DVC) can be applied to these types of image series to obtain quantitative information on the deformations that the bone undergoes [3]. However, application of DVC to whole bones has not been reported and involves additional challenges such as the irregular geometry of the volume and the large size of the sets of image data. The overall goal of this study was to develop a DVC-based method for quantifying deformations throughout entire vertebrae as these vertebrae are loaded to failure.
机译:椎骨骨折是骨质疏松症的标志,但这些骨折涉及的破坏机制尚不十分清楚。通常根据有限元分析或骨折发生后获得的图像估算整个椎骨内的失败模式。对在有害载荷下椎骨承受的变形进行实验测量,将能够直接显示椎骨破坏机制,并有可能验证椎骨骨折的数值模拟结果。延时微计算机断层扫描(μCT)以前已用于可视化小梁骨切除标本的破坏过程[1,2],并且数字体积相关(DVC)方法可以应用于这些类型的图像系列以获得关于骨骼变形的定量信息[3]。然而,尚未报道将DVC应用于整个骨骼,并且还涉及其他挑战,例如体积的不规则几何形状和图像数据集的大尺寸。这项研究的总体目标是开发一种基于DVC的方法来量化整个椎骨的变形,因为这些椎骨承受了破坏。

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