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Correlations between weight-bearing 3D bone architecture and dynamic plantar pressure measurements in the diabetic foot

机译:糖尿病脚重载3D骨结构与动态跖重测量的相关性

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摘要

Pictures representing the process from CBCT scans to the embedded bone reference frames. Pictures representing the process from CBCT scans to the embedded bone reference frames, through the definitions of 3D models of the bone surface. The patient in single-leg weight-bearing during the CBCT scan (a). The 3D data-set including volume rendering available at the interactive screen (b). The result of the process of bone segmentation (Amira): all foot and ankle bone segments were modeled separately (different colors), and the ground segment is also identified and depicted (c). The overall bone models in the foot anatomical reference frame, here in a nearly lateral view (d). Construction of the three anatomical axes by means of the PCA technique, an exemplary application to the calcaneus model; the origin at the centroid of the bone model and the three corresponding co-ordinate axes are depicted (e). The same, for all foot bone models (f)
机译:表示从CBCT扫描到嵌入的骨参考帧的过程的图片。通过骨表面的3D模型的定义,将来自CBCT扫描到嵌入的骨参考帧的过程表示的图片。 CBCT扫描期间单腿负载患者(A)。 3D数据集,包括在交互式屏幕(b)处可用的卷渲染。骨分割过程(AMIRA)的结果:所有脚和踝骨段单独建模(不同颜色),并且还识别并描绘地面段(C)。脚解剖学参考框架中的整体骨模型,这里处于几乎横向视图(D)。通过PCA技术构造三个解剖轴,对Callaneus模型的示例性应用;骨模型和三个相应的旋转轴轴的质心的起源被描绘(E)。相同,对于所有脚骨模型(f)

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