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小梁映射:利用几何形态测量学分析小梁结构。

Trabecular mapping: Leveraging geometric morphometrics for analyses of trabecular structure.

作者信息

Sylvester Adam D, Terhune Claire E

机构信息

Center for Functional Anatomy and Evolution, Johns Hopkins University School of Medicine, Baltimore, Maryland.

Department of Anthropology, University of Arkansas, Fayetteville, Arkansas.

出版信息

Am J Phys Anthropol. 2017 Jul;163(3):553-569. doi: 10.1002/ajpa.23231. Epub 2017 Apr 22.

Abstract

OBJECTIVES

Trabecular microstructure of limb bone epiphyses has been used to elucidate the relationship between skeletal form and behavior among mammals. Such studies have often relied on the analysis of a single volume of interest (VOI). Here we present a method for evaluating variation in bone microstructure across articular surfaces by leveraging sliding semilandmarks.

METHODS

Two samples were used to demonstrate the proposed methodology and test the hypothesis that microstructural variables are homogeneously distributed: tali from two ape genera (Pan and Pongo, n = 9) and modern human distal femora (n = 10). Sliding semilandmarks were distributed across articular surfaces and used to locate the position of multiple VOIs immediately deep to the cortical shell. Trabecular bone properties were quantified using the BoneJ plugin for ImageJ. Nonparametric MANOVA tests were used to make group comparisons and differences were explored using principal components analysis and visualized using color maps.

RESULTS

Tests reveal that trabecular parameters are not distributed homogeneously and identify differences between chimpanzee and orangutan tali with regards to trabecular spacing and degree of anisotropy, with chimpanzee tali being more anisotropic and having more uniformly spaced trabeculae. Human males and females differed in the pattern of trabecular spacing with males having more uniform trabecular spacing across the joint surface.

CONCLUSIONS

The proposed procedure quantifies variation in trabecular bone parameters across joint surfaces and allows for meaningful statistical comparisons between groups of interest. Consequently it holds promise to help elucidate links between trabecular bone structure and animal behavior.

摘要

目的

四肢骨骨骺的小梁微观结构已被用于阐明哺乳动物骨骼形态与行为之间的关系。此类研究通常依赖于对单个感兴趣体积(VOI)的分析。在此,我们提出一种通过利用滑动半地标来评估关节表面骨微观结构变化的方法。

方法

使用两个样本演示所提出的方法,并检验微观结构变量均匀分布的假设:来自两个猿属(黑猩猩属和猩猩属,n = 9)的距骨以及现代人类的股骨远端(n = 10)。滑动半地标分布在关节表面,用于定位紧邻皮质壳下方的多个VOI的位置。使用用于ImageJ的BoneJ插件对小梁骨特性进行量化。使用非参数多变量方差分析测试进行组间比较,并使用主成分分析探索差异,并用彩色地图进行可视化。

结果

测试表明小梁参数并非均匀分布,并确定了黑猩猩和猩猩距骨在小梁间距和各向异性程度方面的差异,黑猩猩距骨的各向异性更强,小梁间距更均匀。人类男性和女性在小梁间距模式上存在差异,男性在整个关节表面的小梁间距更均匀。

结论

所提出的程序量化了关节表面小梁骨参数的变化,并允许对感兴趣的组进行有意义的统计比较。因此,它有望帮助阐明小梁骨结构与动物行为之间的联系。

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