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长方体、舟状骨和距骨的统计形状模型。

Statistical shape models of cuboid, navicular and talus bones.

机构信息

Department of Biomedical Engineering, Wroclaw University of Science and Technology, 50370, Wybrzeze Wyspianskiego, Wroclaw, Poland.

Regional Specialist Hospital, Research and Development Centre, Chair of Orthopaedics, Kamienskiego, Wroclaw, 24105 Poland.

出版信息

J Foot Ankle Res. 2017 Jan 31;10:6. doi: 10.1186/s13047-016-0178-x. eCollection 2017.

Abstract

BACKGROUND

The aim was to develop statistical shape models of the main human tarsal bones that would result in novel representations of cuboid, navicular and talus.

METHODS

Fifteen right and 15 left retrospectively collected computed tomography data sets from male individuals, aged from 17 to 63 years, with no known foot pathology were collected. Data were gathered from 30 different subjects. A process of model building includes image segmentation, unifying feature position, mathematical shape description and obtaining statistical shape geometry.

RESULTS

Orthogonal decomposition of bone shapes utilising spherical harmonics was employed providing means for unique parametric representation of each bone. Cross-validated classification results based on parametric spherical harmonics representation showed high sensitivity and high specificity greater than 0.98 for all considered bones.

CONCLUSIONS

The statistical shape models of cuboid, navicular and talus created in this work correspond to anatomically accurate atlases that have not been previously considered. The study indicates high clinical potential of statistical shape modelling in the characterisation of tarsal bones. Those novel models can be applied in medical image analysis, orthopaedics and biomechanics in order to provide support for preoperative planning, better diagnosis or implant design.

摘要

背景

目的是开发主要跗骨的统计形状模型,从而对骰骨、舟骨和距骨进行新的表示。

方法

从 30 名不同的受试者中收集了 15 名右足和 15 名左足的回顾性 CT 数据集,这些受试者均为年龄在 17 至 63 岁之间的男性,无已知足部疾病。数据采集自 30 名不同的受试者。模型构建过程包括图像分割、统一特征位置、数学形状描述和获取统计形状几何形状。

结果

利用球谐函数对骨骼形状进行正交分解,为每个骨骼提供了独特的参数表示方法。基于参数球谐函数表示的交叉验证分类结果表明,所有考虑的骨骼的敏感性和特异性均大于 0.98。

结论

本研究中创建的骰骨、舟骨和距骨的统计形状模型与解剖学上准确的图谱相对应,这些图谱以前并未被考虑过。该研究表明,统计形状建模在跗骨特征描述方面具有很高的临床潜力。这些新模型可应用于医学图像分析、矫形和生物力学领域,以支持术前规划、更好的诊断或植入物设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/272e/5282805/85672c8ff63f/13047_2016_178_Fig1_HTML.jpg

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