[Nuclear magnetic resonance tomography].

Computertomographie Pub Date : 1981-04-01
A Ganssen, W Loeffler, A Oppelt, F Schmidt
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Abstract

Imaging methods based on nuclear magnetic resonance allow the production of sectional images of the human body without ionizing radiation. It is possible to measure the density and relaxation times of the water protons in body fluids or tissue. This allows not only to obtain morphological information but also to get some insight into the spatial distribution of physiological data. Starting with a review of the principles of nuclear magnetic resonance it is explained how the measured signal can be associated with an image point; it is also explained what type of apparatus is necessary and what the physical limitations are. Possible risks the patient may be exposed to in an examination using nuclear magnetic resonance are discussed. The present state of the technical development enables the production of whole-body sectional images of a living person within about one minute. By means of some typical examples the nature and properties of these images are explained. Although extensive clinical studies will be necessary before a more general assessment can be made of this method, an outlook is provided on expected further developments and possible future fields of application.

[核磁共振断层扫描]。
基于核磁共振的成像方法允许在没有电离辐射的情况下产生人体的断层图像。测量体液或组织中水质子的密度和弛豫时间是可能的。这不仅可以获得形态学信息,还可以深入了解生理数据的空间分布。从核磁共振原理的回顾开始,解释了如何将测量信号与图像点相关联;还解释了需要什么类型的设备以及物理限制是什么。讨论了患者在核磁共振检查中可能面临的风险。目前的技术发展状态可以在大约一分钟内产生一个活人的全身切片图像。通过一些典型的例子,说明了这些图像的性质和性质。尽管在对该方法进行更广泛的评估之前需要进行广泛的临床研究,但对预期的进一步发展和未来可能的应用领域进行了展望。
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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