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Methods for quantitative characterization of bone injury from computed-tomography images

机译:从计算机断层扫描图像定量表征骨损伤的方法

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摘要

Computed tomography (CT) images can potentially provide insights into bone structure for diagnosis of disorders and diseases. However, evaluation of trabecular bone structure and whole bone shape is often qualitative or semi-quantitative. This limits inter-study comparisons and the ability to detect subtle bone quality variations during early disease onset or in response to new treatments. In this work, we enable quantitative characterization of bone diseases through bone morphometry, texture analysis, and shape analysis methods.The potential of our analysis methods to identify the impact of hemophilia is validated in a mouse femur wound model. In our results, shape localizes and characterizes the formation of spurious bone, and our texture and bone morphometry analysis results provide extra information about the composition of that bone. Some of our one-dimensional (1D) textural features were able to significantly differentiate our injured femurs from our healthy femurs, even with this small sample size demonstrating the potential of the proposed analysis framework. While trabecular bone morphometrics have been a pillar in 3D microCT bone research for decades, the proposed analysis framework augments how we define and understand phenotypical presentation of bone disease. The contributed open source software is exposed to the medical image analysis community through 3D Slicer extensions to ensure both robustness and reproducibility.
机译:计算机断层扫描(CT)图像可以潜在地洞悉骨骼结构,以诊断疾病和疾病。但是,对小梁骨结构和全骨形状的评估通常是定性或半定量的。这限制了研究之间的比较,并限制了在疾病早期发作或对新疗法的反应中检测出细微的骨骼质量变化的能力。在这项工作中,我们可以通过骨形态测量,纹理分析和形状分析方法对骨疾病进行定量表征。在小鼠股骨伤口模型中验证了我们分析方法识别血友病影响的潜力。在我们的结果中,形状可以定位并表征假骨的形成,而我们的纹理和骨形态分析结果可以提供有关该骨组成的更多信息。我们的一些一维(1D)纹理特征能够将受伤的股骨与健康的股骨区分开来,即使样本量很小也证明了拟议分析框架的潜力。尽管小梁骨形态计量学一直是3D microCT骨研究的基础,但提出的分析框架充实了我们如何定义和理解骨疾病的表型表现。所贡献的开源软件通过3D Slicer扩展向医学图像分析社区开放,以确保鲁棒性和可重复性。

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