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基于双重克里金法的脊柱曲线三维曲线建模

Curvilinear Three-Dimensional Modeling of Spinal Curves with Dual Kriging.

作者信息

Poncet PHILIPPE, Trochu FRANÇOIS, Dansereau JEAN

机构信息

Department of Mechanical Engineering, École Polytechnique, P.O. Box 6079, Station "Centre-ville", Montréal, Québec, H3C 3A7, Canada.

出版信息

Comput Methods Biomech Biomed Engin. 1999;2(4):295-308. doi: 10.1080/10255849908907994.

Abstract

In spinal deformation studies, three-dimensional reconstruction of the spine is frequently represented as a curve in space fitted to the vertebral centroids. Conventional interpolation techniques such as splines, Bezier and the least squares method are limited since they cannot describe precisely the great variety of spinal morphologies. This article presents a more general technique called dual kriging, which includes two mathematical constituents (drift and covariance) to adjust the interpolated functions to spinal deformity better. The cross-validation technique was used to compare the parametric representations of spinal curves with different combinations of drift and covariance functions. Model validation was performed from a series of analytic curves reflecting typical scoliotic spines. Calculation of geometric torsion, a sensitive parameter, was done to evaluate the accuracy of the kriging models. The best model showed an absolute mean difference of 1.2 x 10(-5) (+/- 7.1 x 10(-5) ) mm(-1) between the analytical and estimated geometric torsions compared to 5.25 x 10(-3) (+/- 3.7 x 10(-2) ) mm(-1) for the commonly used least-squares Fourier series method, a significant improvement in spinal torsion evaluation.

摘要

在脊柱变形研究中,脊柱的三维重建通常表示为拟合椎体中心的空间曲线。传统的插值技术,如样条插值、贝塞尔插值和最小二乘法,存在局限性,因为它们无法精确描述脊柱形态的多样性。本文提出了一种更通用的技术——双克里金法,它包含两个数学要素(漂移和协方差),能更好地将插值函数与脊柱畸形相匹配。交叉验证技术用于比较具有不同漂移和协方差函数组合的脊柱曲线参数表示。模型验证是通过一系列反映典型脊柱侧弯的解析曲线进行的。通过计算敏感参数几何扭转来评估克里金模型的准确性。最佳模型在解析几何扭转和估计几何扭转之间显示出的绝对平均差为1.2×10⁻⁵(±7.1×10⁻⁵)mm⁻¹,而常用的最小二乘傅里叶级数法的这一差值为5.25×10⁻³(±3.7×10⁻²)mm⁻¹,在脊柱扭转评估方面有显著改进。

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