Mean-shifted surface curvature algorithm for automatic bone shape segmentation in orthopedic surgery planning: a sensitivity analysis.

Q Medicine Computer Aided Surgery Pub Date : 2012-01-01 Epub Date: 2012-04-02 DOI:10.3109/10929088.2012.670667
Pietro Cerveri, Alfonso Manzotti, Mario Marchente, Norberto Confalonieri, Guido Baroni
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引用次数: 10

Abstract

The results of recent studies concerning statistical bone atlases and automated shape analysis are promising with a view to widening the use of surface models in orthopedic clinical practice, both in pre-operative planning and in the intra-operative stages. In this domain, automatic shape analysis is strongly advocated because it offers the opportunity to detect morphological and clinical landmarks with superior repeatability in comparison to human operators. Surface curvatures have been proposed extensively for segmentation and labeling of image and surface regions based on their appearance and shape. The surface curvature is an invariant that can be exploited for reliable detection of geometric features. In this paper, we investigate the potentiality of the algorithm termed mean-shift (MS), as applied to a non-linear combination of the minimum and maximum curvatures of a surface. We exploited a sensitivity analysis of the algorithm parameters across increasing surface resolutions. Results obtained with femur and pelvic bone surface data, reconstructed from cadaveric CT scans, demonstrated that the information content derived by the MS non-linear curvature overcomes both the mean and the Gaussian curvatures and the original non-linear curvature. By applying a threshold-based clustering algorithm to the curvature distribution, we found that the number of clusters yielded by the MS non-linear curvature is significantly lower (by a factor of up to 6) than that obtained by using the original non-linear curvature. In conclusion, this study provides valuable insights into the use of surface curvature for automatic shape analysis.

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骨科手术规划中骨形状自动分割的平均移位曲面曲率算法:灵敏度分析。
最近关于统计骨图谱和自动形状分析的研究结果很有希望扩大表面模型在骨科临床实践中的应用,无论是在术前计划还是术中阶段。在这个领域,自动形状分析是强烈提倡的,因为它提供了检测形态学和临床标志的机会,与人类操作员相比,具有优越的可重复性。基于图像和表面区域的外观和形状,曲面曲率被广泛地用于图像和表面区域的分割和标记。曲面曲率是一个不变量,可以用来可靠地检测几何特征。在本文中,我们研究了称为均值移位(MS)的算法的潜力,作为应用于曲面的最小和最大曲率的非线性组合。我们利用了算法参数在增加表面分辨率时的敏感性分析。从尸体CT扫描中重建股骨和骨盆骨表面数据的结果表明,MS非线性曲率获得的信息量克服了平均值和高斯曲率以及原始非线性曲率。通过对曲率分布应用基于阈值的聚类算法,我们发现MS非线性曲率产生的聚类数量明显低于使用原始非线性曲率获得的聚类数量(高达6倍)。总之,这项研究为使用曲面曲率进行自动形状分析提供了有价值的见解。
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来源期刊
Computer Aided Surgery
Computer Aided Surgery 医学-外科
CiteScore
0.75
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The scope of Computer Aided Surgery encompasses all fields within surgery, as well as biomedical imaging and instrumentation, and digital technology employed as an adjunct to imaging in diagnosis, therapeutics, and surgery. Topics featured include frameless as well as conventional stereotaxic procedures, surgery guided by ultrasound, image guided focal irradiation, robotic surgery, and other therapeutic interventions that are performed with the use of digital imaging technology.
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