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技术说明:人科牙齿二维和三维釉质厚度数字计算指南。

Technical Note: Guidelines for the digital computation of 2D and 3D enamel thickness in hominoid teeth.

机构信息

Department of Human Evolution, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, Leipzig, 04103, Germany.

出版信息

Am J Phys Anthropol. 2014 Feb;153(2):305-13. doi: 10.1002/ajpa.22421. Epub 2013 Nov 18.

Abstract

The study of enamel thickness has received considerable attention in regard to the taxonomic, phylogenetic and dietary assessment of human and non-human primates. Recent developments based on two-dimensional (2D) and three-dimensional (3D) digital techniques have facilitated accurate analyses, preserving the original object from invasive procedures. Various digital protocols have been proposed. These include several procedures based on manual handling of the virtual models and technical shortcomings, which prevent other scholars from confidently reproducing the entire digital protocol. There is a compelling need for standard, reproducible, and well-tailored protocols for the digital analysis of 2D and 3D dental enamel thickness. In this contribution we provide essential guidelines for the digital computation of 2D and 3D enamel thickness in hominoid molars, premolars, canines and incisors. We modify previous techniques suggested for 2D analysis and we develop a new approach for 3D analysis that can also be applied to premolars and anterior teeth. For each tooth class, the cervical line should be considered as the fundamental morphological feature both to isolate the crown from the root (for 3D analysis) and to define the direction of the cross-sections (for 2D analysis).

摘要

牙釉质厚度的研究在人类和非人类灵长类动物的分类学、系统发生学和饮食评估方面受到了相当多的关注。基于二维 (2D) 和三维 (3D) 数字技术的最新发展促进了准确的分析,同时避免了对原始物体的侵入性操作。已经提出了各种数字协议。其中包括几种基于手动处理虚拟模型和技术缺陷的程序,这使得其他学者无法自信地复制整个数字协议。因此,非常需要用于 2D 和 3D 牙釉质厚度数字化分析的标准、可重复和定制的协议。在本研究中,我们为类人猿磨牙、前磨牙、犬齿和切牙的 2D 和 3D 牙釉质厚度的数字化计算提供了基本的指导方针。我们修改了之前建议的用于 2D 分析的技术,并开发了一种新的 3D 分析方法,也可用于前磨牙和前牙。对于每个牙齿类别,颈线应被视为基本的形态特征,用于将牙冠与牙根分离(用于 3D 分析)和定义横切面的方向(用于 2D 分析)。

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