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重新审视人类上颌磨牙的牙釉质厚度。

Enamel thickness of human maxillary molars reconsidered.

作者信息

Macho G A, Berner M E

机构信息

Department of Human Anatomy and Cell Biology, University of Liverpool, England.

出版信息

Am J Phys Anthropol. 1993 Oct;92(2):189-200. doi: 10.1002/ajpa.1330920208.

Abstract

Forty-four modern human maxillary molars (M1 = 21, M2 = 12, and M3 = 11) were sectioned through the mesial cusps in a plane perpendicular to the cervical margin of the crown. Eight measurements of enamel thickness as well as bucco-lingual (BL) and mesio-distal (MD) diameters were recorded for each tooth in order to investigate differences in these dimensions between tooth categories. Uni- and multi-variate analyses revealed first maxillary molars to have generally thinner enamel than second or third upper molars, especially with regard to the occlusal basin. Furthermore, the decrease of MD diameters from anterior to posterior is greater than that of BL diameters. Principal Component Analysis using enamel thickness measurements resulted in complete separation of first molars, while second and third maxillary molars showed a certain amount of overlap. This finding casts doubt on using an overall measure of "molar enamel thickness" derived from mixed samples of molars for taxonomic purposes. There appears to be a relationship between bite force and enamel thickness such that posterior molars, where masticatory forces are stronger, have thicker enamel than anterior teeth. It is suggested that the gradient of enamel thickness between (and within) teeth in extant and extinct species may thus provide further information about relative wear resistance as well as the biomechanical constraints of the orofacial skeleton.

摘要

44颗现代人上颌磨牙(第一磨牙21颗、第二磨牙12颗、第三磨牙11颗)在垂直于牙冠颈缘的平面上通过近中尖进行切片。记录每颗牙齿的8项釉质厚度测量值以及颊舌径(BL)和近远中径(MD),以研究不同牙齿类别在这些尺寸上的差异。单变量和多变量分析显示,上颌第一磨牙的釉质通常比上颌第二或第三磨牙薄,尤其是在咬合面窝处。此外,近远中径从前往后的减小幅度大于颊舌径。使用釉质厚度测量值进行主成分分析,结果显示第一磨牙完全分离,而上颌第二和第三磨牙有一定程度的重叠。这一发现对将来自磨牙混合样本的“磨牙釉质厚度”总体测量值用于分类学目的提出了质疑。咬合力与釉质厚度之间似乎存在一种关系,即咀嚼力较强的后磨牙釉质比前牙厚。有人提出,现存和已灭绝物种牙齿之间(以及牙齿内部)釉质厚度的梯度可能会提供有关相对耐磨性以及口面部骨骼生物力学限制的更多信息。

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