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牙釉质结构与微磨损:牙釉质对剪切力反应的实验研究

Enamel structure and microwear: an experimental study of the response of enamel to shearing force.

作者信息

Maas M C

机构信息

Department of Biological Anthropology and Anatomy, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

Am J Phys Anthropol. 1991 May;85(1):31-49. doi: 10.1002/ajpa.1330850106.

Abstract

The anisotropic fracturing and differential wear properties of enamel microstructure represent factors that can obscure the predictive relationship between dental microwear and diet. To assess the impact of enamel structure on microwear, this in vitro experimental study examines the relative contributions to wear of three factors: 1) species differences in microstructure, 2) direction of shearing force relative to enamel prisms and crystallites, and 3) size of abrasive particles. Teeth of Lemur, Ovis, Homo, and Crocodylus, representing, respectively, the structural categories of prismatic patterns 1, 2, and 3 and nonprismatic enamel, were abraded by shearing forces (forces having a component directed parallel to abraded surfaces) and examined by scanning electron microscopy. Striation width increased with particle size for nonprismatic, but not for prismatic, specimens. Direction of shear relative to prism and crystallite orientation had a significant influence on striation width in only some prismatic enamels. The different responses of prismatic and nonprismatic enamels to abrasion reflect the influence of structure, but at the level of organization of crystallites rather than prisms per se. Such interactions explain in part the inability of striation width to discriminate among animals with different dietary habits. Heteroscedasticity and deviations from normality also may confound parametric analyses of microwear variables. Variation in crystallite orientation in prismatic enamels may contribute to optimal dental function through the property of differential wear in functionally distinct regions of teeth.

摘要

牙釉质微观结构的各向异性断裂和差异磨损特性是可能掩盖牙齿微磨损与饮食之间预测关系的因素。为了评估牙釉质结构对微磨损的影响,这项体外实验研究考察了三个因素对磨损的相对贡献:1)微观结构的物种差异;2)剪切力相对于牙釉柱和微晶的方向;3)磨料颗粒的大小。分别代表棱柱模式1、2和3以及非棱柱形牙釉质结构类别的狐猴、绵羊、人类和鳄鱼的牙齿,通过剪切力(具有平行于磨损表面方向分量的力)进行磨损,并通过扫描电子显微镜进行检查。非棱柱形标本的条纹宽度随颗粒大小增加,而棱柱形标本则不然。相对于棱柱和微晶取向的剪切方向仅对某些棱柱形牙釉质的条纹宽度有显著影响。棱柱形和非棱柱形牙釉质对磨损的不同反应反映了结构的影响,但这种影响是在微晶而非棱柱本身的组织层面上。这种相互作用部分解释了条纹宽度无法区分具有不同饮食习惯动物的原因。异方差性和偏离正态性也可能混淆微磨损变量的参数分析。棱柱形牙釉质中微晶取向的变化可能通过牙齿功能不同区域的差异磨损特性有助于实现最佳的牙齿功能。

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