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首页> 外文期刊>Journal of Anatomy >The mammalian bony labyrinth reconsidered, introducing a comprehensive geometric morphometric approach
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The mammalian bony labyrinth reconsidered, introducing a comprehensive geometric morphometric approach

机译:重新考虑了哺乳动物的骨迷宫,引入了一种全面的几何形态学方法

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摘要

The bony labyrinth in the temporal bone houses the sensory systems of balance and hearing. While the overall structure of the semicircular canals and cochlea is similar across therian mammals, their detailed morphology varies even among closely related groups. As such, the shape of the labyrinth carries valuable functional and phylogenetic information. Here we introduce a new, semilandmark-based three-dimensional geometric morphometric approach to shape analysis of the labyrinth, as a major improvement upon previous metric studies based on linear measurements and angles. We first provide a detailed, step-by-step description of the measurement protocol. Subsequently, we test our approach using a geographically diverse sample of 50 recent modern humans and 30 chimpanzee specimens belonging to Pan troglodytes troglodytes and P. t. verus. Our measurement protocol can be applied to CT scans of different spatial resolutions because it primarily quantifies the midline skeleton of the bony labyrinth. Accurately locating the lumen centre of the semicircular canals and the cochlea is not affected by the partial volume and thresholding effects that can make the comparison of the outer border problematic. After virtually extracting the bony labyrinth from CT scans of the temporal bone, we computed its midline skeleton by thinning the encased volume. On the resulting medial axes of the semicircular canals and cochlea we placed a sequence of semilandmarks. After Procrustes superimposition, the shape coordinates were analysed using multivariate statistics. We found statistically significant shape differences between humans and chimpanzees which corroborate previous analyses of the labyrinth based on traditional measurements. As the geometric relationship among the semilandmark coordinates was preserved throughout the analysis, we were able to quantify and visualize even small-scale shape differences. Notably, our approach made it possible to detect and visualize subtle, yet statistically significant (P=0.009), differences between two chimpanzee subspecies in the shape of their semicircular canals. The ability to discriminate labyrinth shape at the subspecies level demonstrates that the approach presented here has great potential in future taxonomic studies of fossil specimens.
机译:颞骨的骨迷路容纳了平衡和听力的感觉系统。尽管整个半角类哺乳动物的半圆形运河和耳蜗的总体结构相似,但即使在密切相关的群体中,它们的详细形态也有所不同。因此,迷宫的形状带有有价值的功能和系统发育信息。在这里,我们介绍了一种基于半陆标的新的三维几何形态学方法来迷宫的形状分析,这是对以前基于线性测量和角度的度量研究的重大改进。我们首先提供有关测量协议的详细分步说明。随后,我们使用地理分布多样的样本测试了我们的方法,该样本包括50个近代现代人类和30个黑猩猩标本,它们分别属于泛穴居人和穴居人。维鲁斯。我们的测量协议可以应用于不同空间分辨率的CT扫描,因为它主要量化了骨迷路的中线骨架。精确定位半圆形管腔和耳蜗的腔中心不受局部体积和阈值效应的影响,局部体积和阈值效应会使外边界的比较成为问题。从颞骨的CT扫描中实际上提取出了骨迷路之后,我们通过减薄包裹的体积来计算其中线骨骼。在得到的半圆形运河和耳蜗的内侧轴上,我们放置了一系列半地标。 Procrustes叠加后,使用多元统计数据分析形状坐标。我们发现人与黑猩猩之间在统计学上有显着的形状差异,这证实了以前基于传统测量方法对迷宫的分析。由于整个分析过程中保留了半地标坐标之间的几何关系,因此我们甚至可以量化和可视化小规模的形状差异。值得注意的是,我们的方法使检测和可视化两个黑猩猩亚种之间半圆形管形的细微但统计显着(P = 0.009)成为可能。在亚种水平上区分迷宫形状的能力表明,本文介绍的方法在化石标本的未来分类学研究中具有巨大的潜力。

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