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扫描电子显微镜中冷冻水合切片的X射线微分析:一项评估

The x-ray microanalysis of frozen-hydrated sections in scanning electron microscopy: an evaluation.

作者信息

Gupta B L, Hall T A

出版信息

Tissue Cell. 1981;13(4):623-43. doi: 10.1016/s0040-8166(81)80001-8.

Abstract

The present status of the technique to measure concentrations of electrolyte elements and dry mass in or approximately 1 mum thick frozen-hydrated sections of soft biological tissues with electron probe X-ray microanalysis in a scanning electron microscope is critically reviewed. The technique is to quench-freeze fresh specimens to less than -180 degrees C, cut approximately 1 mum thick hydrated cryosections ( less than or equal to -70 degrees C), transfer on to a cold stage (less than -170 degrees C) of a suitable microanalytical arrangement, obtain scanning transmission images to identify the cell and tissue compartments, locate an electron probe (several mum2 to 100 nm) on the areas of interest and collect X-ray quanta. The X-ray quanta collected with suitable spectrometers (WDS and EDS) and processed with a computer using a comprehensive programme based on continuum normalization procedures ('Hall' programme). The cryosections are analysed first in a hydrated state and second after dehydration within the microanalyser column to obtain directly elemental concentrations in muM kg-1 wet wt and muM kg-1 dry wt of the compartments identified under the beam. The local water-fractions are estimated and the elemental concentrations converted into muM 1(-1) water. In the past 7 years the technique has been applied to obtain fully quantitative information on Na, K, Cl, P, S, Ca and H2O in more than ten types of tissue.

摘要

本文对利用扫描电子显微镜中的电子探针X射线微分析法测量软组织冷冻水合切片(厚度约为1μm)中电解质元素浓度和干质量的技术现状进行了批判性综述。该技术是将新鲜标本速冻至低于-180℃,切成约1μm厚的水合冷冻切片(≤-70℃),转移至合适的微分析装置的冷台(低于-170℃)上,获取扫描透射图像以识别细胞和组织区域,将电子探针(几μm²至100nm)定位在感兴趣的区域并收集X射线量子。用合适的光谱仪(波谱仪和能谱仪)收集X射线量子,并使用基于连续归一化程序的综合程序(“霍尔”程序)在计算机上进行处理。首先在水合状态下分析冷冻切片,然后在微分析仪柱内脱水后进行分析,以直接获得束下识别区域的μM kg⁻¹湿重和μM kg⁻¹干重中的元素浓度。估计局部水分数,并将元素浓度转换为μM 1⁻¹水。在过去7年中,该技术已应用于获取十多种组织中钠、钾、氯、磷、硫、钙和水的完全定量信息。

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