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用于评估脊柱侧弯中躯干形状和对称性的距离数据预处理

Range data pre-processing for the evaluation of torso shape and symmetry in scoliosis.

作者信息

Ajemba Peter O, Kumar Anish, Durdle Nelson G, Raso V James

机构信息

Department of Electrical and Computer Engineering, University of Alberta, Edmonton, AB, Canada.

出版信息

Comput Methods Biomech Biomed Engin. 2009 Dec;12(6):641-9. doi: 10.1080/10255840902822543.

Abstract

Pre-processing range scans of the human torso for evaluating shape and symmetry changes in scoliosis are non-trivial. First, stray points from surrounding artefacts are often arbitrarily positioned and not amenable to automatic removal. Second, the asymmetrical alignment of the arms and neck makes cropping them difficult. Third, despite a plethora of methods, removal of holes by surface approximation for this niche application remains a challenge particularly in obscure regions like the sides and armpits. This paper proposes a novel surface approximation method and incorporates it into an integrated procedure for pre-processing range scans of the torso that includes interactive tools for cropping stray points and extremities. The new method, spline-fitted moving least squares (MLS), makes use of the Bezier curve and MLS algorithms. Numeric and clinical tests on scans of 30 volunteers, with and without scoliosis, show that the proposed method outperforms its constituent methods and a commercially available graphics package for this application.

摘要

对人体躯干的距离扫描进行预处理以评估脊柱侧弯中的形状和对称性变化并非易事。首先,来自周围伪影的杂散点通常位置随意,难以自动去除。其次,手臂和颈部的不对称对齐使得裁剪它们很困难。第三,尽管有大量方法,但针对这种特定应用通过曲面逼近去除孔洞仍然是一个挑战,尤其是在侧面和腋窝等模糊区域。本文提出了一种新颖的曲面逼近方法,并将其纳入到一个用于躯干距离扫描预处理的集成程序中,该程序包括用于裁剪杂散点和四肢的交互式工具。新方法,即样条拟合移动最小二乘法(MLS),利用了贝塞尔曲线和MLS算法。对30名有或没有脊柱侧弯的志愿者的扫描进行的数值和临床测试表明,该方法在此应用中优于其组成方法和一个商业图形软件包。

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