生物学中质子探针微量分析原理。

Scanning microscopy. Supplement Pub Date : 1994-01-01
G J Legge, M Cholewa
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引用次数: 0

摘要

质子微探针,更准确的描述是离子微探针,在MeV能量下工作,补充了它的母体仪器电子微探针。本文比较了这两种仪器的基本原理和性能,并将离子微探针的生物分析的发展与电子微探针的发展联系起来,包括样品处理技术和数据处理技术的发展以及比较束损伤研究。本文介绍了各种可用于离子微探针的技术-能量色散x射线分析,卢瑟福背散射和核反应分析的初始技术以及从扫描透射离子显微镜到三维断层扫描等新技术的快速发展。所有这些新技术都需要先进的计算机化数据处理,这是离子微探针发展的一个特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The principles of proton probe microanalysis in biology.

The proton microprobe, more correctly described as an ion microprobe which operates at MeV energies, complements its parent instrument the electron microprobe. This paper compares the basic principles and performance of the two instruments and relates the evolution of biological analysis on such ion microprobes to that on electron microprobes, covering the development of sample handling techniques and of data handling techniques and comparing beam damage studies. The paper describes the variety of techniques available to the ion microprobe - the initial techniques of Energy Dispersive X-ray analysis, Rutherford Back Scattering and Nuclear Reaction Analysis and the rapid evolution of new techniques, from Scanning Transmission Ion Microscopy to 3-dimensional tomography. All of these new techniques required the advanced computerised data handling which has been a feature of ion microprobe development.

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