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几何形态测量技术在评估功能形状变异方面的效果如何?来自大型猿类颞下颌关节的一个实例。

How effective are geometric morphometric techniques for assessing functional shape variation? An example from the great ape temporomandibular joint.

机构信息

Department of Community and Family Medicine, Duke University Medical Center, Durham, North Carolina, USA.

出版信息

Anat Rec (Hoboken). 2013 Aug;296(8):1264-82. doi: 10.1002/ar.22724. Epub 2013 Jun 6.

Abstract

Functional shape analyses have long relied on the use of shape ratios to test biomechanical hypotheses. This method is powerful because of the ease with which results are interpreted, but these techniques fall short in quantifying complex morphologies that may not have a strong biomechanical foundation but may still be functionally informative. In contrast, geometric morphometric methods are continually being adopted for quantifying complex shapes, but they tend to prove inadequate in functional analyses because they have little foundation in an explicit biomechanical framework. The goal of this study was to evaluate the intersection of these two methods using the great ape temporomandibular joint as a case study. Three-dimensional coordinates of glenoid fossa and mandibular condyle shape were collected using a Microscribe digitizer. Linear distances extracted from these landmarks were analyzed using a series of one-way ANOVAs; further, the landmark configurations were analyzed using geometric morphometric techniques. Results suggest that the two methods are broadly similar, although the geometric morphometric data allow for the identification of shape differences among taxa that were not immediately apparent in the univariate analyses. Furthermore, this study suggests several new approaches for translating these shape data into a biomechanical context by adjusting the data using a biomechanically relevant variable.

摘要

功能形态分析长期以来一直依赖于使用形状比来检验生物力学假设。这种方法很强大,因为结果易于解释,但这些技术在量化可能没有强大生物力学基础但仍然具有功能信息的复杂形态方面存在不足。相比之下,几何形态测量方法一直在被用于量化复杂形状,但它们在功能分析中往往证明是不够的,因为它们在明确的生物力学框架中几乎没有基础。本研究的目的是评估这两种方法的交叉点,以上颌下颌关节作为案例研究。使用 Microscribe 数字化仪收集关节窝和下颌骨的三维坐标。从这些地标提取的线性距离使用一系列单向方差分析进行分析; 此外,使用几何形态测量技术对地标配置进行分析。结果表明,这两种方法大致相似,尽管几何形态测量数据允许识别在单变量分析中不明显的分类群之间的形状差异。此外,本研究通过使用与生物力学相关的变量调整数据,提出了几种将这些形状数据转换为生物力学背景的新方法。

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