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同步辐射X射线的医学应用

Medical applications of synchrotron radiation x-rays.

作者信息

Lewis R

机构信息

Daresbury Laboratory, Warrington, UK.

出版信息

Phys Med Biol. 1997 Jul;42(7):1213-43. doi: 10.1088/0031-9155/42/7/001.

Abstract

The use of synchrotron radiation is not widespread in the field of medicine and in fact few health-care professionals have even heard of it. It is the purpose of this article to explain what it is and to give some examples of how it can contribute to medical science. X-rays have been used for diagnostic medical imaging for more than 100 years and, whilst new techniques such as computed tomography have been developed, the means of producing x-rays has altered little during that time. Synchrotron radiation sources provide multiple, extremely intense and tuneable beams of photons over a huge range of energies from infrared through to hard x-rays. Their advent has revolutionized many experimental techniques and synchrotron radiation is being applied across many fields from imaging to molecular dynamics. It has spawned several methods for studying live and wet tissue samples, yielding information on both structure and composition on all length scales down to atomic resolution. Such techniques have played a crucial role in the development of molecular biology and the solution of protein structures. The application of synchrotron radiation in the field of radiography is now expanding and it is clear that very substantial improvements in image quality and patient dose can be realized. Following an overview of the production and properties of synchrotron radiation, some of the ways in which this remarkable tool has already been exploited for medical research are reviewed and some potential clinical opportunities highlighted.

摘要

同步辐射在医学领域的应用并不广泛,实际上很少有医疗保健专业人员听说过它。本文旨在解释同步辐射是什么,并举例说明它如何能为医学科学做出贡献。X射线用于医学诊断成像已有100多年历史,虽然诸如计算机断层扫描等新技术已经得到发展,但在此期间产生X射线的方式几乎没有改变。同步辐射源能在从红外到硬X射线的巨大能量范围内提供多个极其强烈且可调谐的光子束。它们的出现彻底改变了许多实验技术,同步辐射正在从成像到分子动力学的众多领域得到应用。它催生了几种研究活组织和湿组织样本的方法,能够在从原子分辨率到所有长度尺度上提供有关结构和组成的信息。这些技术在分子生物学的发展和蛋白质结构的解析中发挥了关键作用。同步辐射在放射成像领域的应用目前正在扩大,很明显可以实现图像质量和患者剂量的大幅改善。在概述同步辐射的产生和特性之后,本文回顾了这一非凡工具在医学研究中已经得到利用的一些方式,并突出了一些潜在的临床应用机会。

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