Indepth distributions of elements in teeth, determined by ion probe analysis.

Microscopica acta. Supplement Pub Date : 1978-01-01
A Lodding, H Odelius
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Abstract

The technique of secondary ion mass spectrometry has been applied to dental hard tissue. The method offers high sensitivity (ppb-ppm) to most elements, a topographic surface resolution of about 1 micron, and a practical depth resolution in the 10 nm range. Quantitative analysis has entailed the use of external standards or the adaptation of a thermodynamic model of the secondary ionization mechanism. The intrinsic mass spectra of secondary ions from apatite material have been studied to assess the practical detection limits for most elements of the periodic table. Fluorine studies have been performed on enamel subjected to different prophylactic treatments. The atomic mechanism of fluorine mobility in teeth have been studied in diffusion anneals. The distributions of different elements (F, Cl, P, Li, Na, K, Rb, Mg, Sr, Ba, Al, C, Pb) have been investigated in dependence of depth in the enamel and dentin from different environments.

牙齿中元素的深度分布,由离子探针分析确定。
二次离子质谱技术已在口腔硬组织中得到应用。该方法对大多数元素具有高灵敏度(ppb-ppm),地形表面分辨率约为1微米,实际深度分辨率在10纳米范围内。定量分析需要使用外部标准或采用二次电离机制的热力学模型。研究了磷灰石材料中二次离子的本征质谱,以评估元素周期表中大多数元素的实际检出限。对不同预防性治疗的牙釉质进行了氟研究。用扩散退火法研究了氟在牙齿中迁移的原子机理。研究了不同环境下不同元素(F、Cl、P、Li、Na、K、Rb、Mg、Sr、Ba、Al、C、Pb)在牙本质和牙釉质中的分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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