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Function-based morphing methodology for parameterizing patient-specific models of human proximal femurs

机译:基于功能的变形方法论,用于参数化人类近端股骨的患者特定模型

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This paper presents a novel morphing method for parameterizing patient-specific femur models based on femoral biomechanical functions. The proposed function-based morphing (FBM) method aims to provide a robust way to independently morph each partial functional region of the target femur structure by simply assigning the given functional parameters such as the femoral head diameter, neck length and diameter, and neck inclination angle. FBM includes three steps: (1) feature recognition to segment a femoral model into functional regions, (2) simplification to estimate the original parameters of the model and to define the morphing criteria as geometrical constraints, and (3) morphing to obtain the required shape by applying FBM fields that convert the terms of parametric changes into morphing vector terms for each segmented region. The proposed method was validated on a total of 48 patient-specific femur models. These models were parameterized and morphed without unexpected parametric changes, and the averaged error between the required parameters and the re-estimated parameters after morphing was 3.47%. Our observations indicate that the variation models developed in this study can be used as fundamentals for various functional sensitivity analyses for predicting changes in biomechanical responses due to the morphological changes of a subject-specific femur structure.
机译:本文提出了一种新的变形方法,用于基于股骨生物力学功能参数化特定于患者的股骨模型。所提出的基于功能的变形(FBM)方法旨在通过简单地分配给定的功能参数(例如股骨头直径,颈部长度和直径以及颈部倾斜度)来提供一种可靠的方式来独立变形目标股骨结构的每个部分功能区域角度。 FBM包括三个步骤:(1)特征识别以将股骨模型分割为功能区域;(2)简化以估计模型的原始参数并将变形标准定义为几何约束;(3)变形以获得所需的形状通过应用FBM字段对每个分段区域将参数变化项转换为变形向量项的形状。该方法在总共48种患者特定的股骨模型中得到了验证。这些模型经过参数化和变形,没有意外的参数变化,变形后所需参数与重新估计的参数之间的平均误差为3.47%。我们的观察表明,这项研究中开发的变异模型可以用作各种功能敏感性分析的基础,以预测由于受试者特定股骨结构的形态变化而引起的生物力学反应的变化。

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