Standards for X-ray microanalysis of calcified structures.

Scanning microscopy. Supplement Pub Date : 1994-01-01
J A Lopez-Escamez, A Campos
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Abstract

The ability of electron probe X-ray microanalysis (EPMA) to solve biological problems often depends on the use of a quantitative approach. EPMA allows the quantitative determination of chemical elements of biological materials by using reference standards which resemble the specimen in the mode of interaction with the electron beam. Although there is a large experience in the quantification of elements in biological thin specimens, experience with standards for X-ray microanalysis of bulk specimens is limited, especially for calcified structures where the density of the specimen is difficult to estimate. The quality of the results in EPMA depends on obtaining accurate calibration curves which allow the establishment of the relationship between the signal measured and the concentration of the element of interest. The different methods for specimen preparation and the thickness of the specimen will also determine the precise nature of the standardization technique to be adopted. The physics of the electron beam-specimen interactions impose limitations upon the accuracy of calibration, and the choice of an unstable standard can result in large errors in the quantification of elements. We have reviewed the different types of compounds that have been used as standards for biological EPMA of thin and bulk specimens and discuss their potential use for quantitative analysis of mineralized tissues, with special reference to otoconia, the calcified structures of the vestibular system.

钙化结构的x射线显微分析标准。
电子探针x射线微分析(EPMA)解决生物学问题的能力往往依赖于定量方法的使用。EPMA通过使用与电子束相互作用模式相似的样品的参考标准,允许对生物材料的化学元素进行定量测定。尽管在生物薄标本中元素的定量方面有丰富的经验,但在散装标本的x射线微量分析标准方面的经验有限,特别是对于难以估计标本密度的钙化结构。EPMA结果的质量取决于获得准确的校准曲线,该曲线允许建立测量信号与感兴趣元素浓度之间的关系。不同的试样制备方法和试样厚度也将决定所采用的标准化技术的精确性。电子束-样品相互作用的物理特性限制了校准的准确性,而选择不稳定的标准会导致元素定量的大误差。我们回顾了不同类型的化合物已被用作薄和散装标本的生物EPMA标准,并讨论了它们在矿化组织定量分析中的潜在用途,特别提到了耳蜗,前庭系统的钙化结构。
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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