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人牙釉质晶体的高分辨率电子显微镜观察

High-resolution electron microscopy of human enamel crystals.

作者信息

Brès E F, Voegel J C, Frank R M

机构信息

INSERM U157, CNRS URA 588, Faculté Chirurgie Dentaire, Université Louis Pasteur, Strasbourg, France.

出版信息

J Microsc. 1990 Nov;160(Pt 2):183-201. doi: 10.1111/j.1365-2818.1990.tb03057.x.

Abstract

The structure of enamel crystals obtained from four human premolars has been studied by high-resolution electron microscopy (HREM) in the [0001], [2110], [1540], [0110] and [1213] crystallographic directions at various microscope defocus and crystal thickness values. The resolution obtained has not previously been reported for human enamel crystals. In all cases, it was possible to match the experimental images to images calculated using the atomic positions of mineral hydroxyapatite. However, a deviation from hexagonal symmetry characterized by marked (1010) planes of intensity different from the one of the (3030) and (1010)-type planes was observed. In this work, we present an improvement of Scherzer resolution of 0.25-0.20 nm over previous work on biological enamel crystals. This improvement of resolution has permitted the incorporation of crystallographic reflections of higher spatial frequencies into the imaging process of the microscope and has led to a more precise structure determination of the crystals studied.

摘要

利用高分辨率电子显微镜(HREM),在不同的显微镜散焦和晶体厚度值条件下,对取自四颗人类前磨牙的牙釉质晶体结构在[0001]、[2110]、[1540]、[0110]和[1213]晶向进行了研究。此前尚未有关于人类牙釉质晶体所获分辨率的报道。在所有情况下,都能够将实验图像与使用矿物羟基磷灰石原子位置计算出的图像相匹配。然而,观察到一种偏离六方对称的情况,其特征是(1010)平面的强度明显不同于(3030)和(1010)型平面。在这项工作中,我们在生物牙釉质晶体的先前研究基础上,将谢尔策分辨率提高了0.25 - 0.20纳米。分辨率的这种提高使得更高空间频率的晶体学反射能够纳入显微镜成像过程,并导致对所研究晶体的结构测定更加精确。

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