核磁共振成像在中枢神经系统中的作用

Natalia Leksa, D. Aebisher, D. Bartusik-Aebisher
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引用次数: 0

摘要

介绍。磁共振成像(MRI)已经改变了放射学的实践。核磁共振成像是基于特定频率的无线电波与体内氢核之间的安全相互作用。代谢性脑病的定义是中枢神经系统的紊乱,主要不是由于结构异常。的目标。在这里,我们提出1H MRI和功能MRI (fMRI)方法应用于中枢神经系统疾病的诊断。材料和方法。文献分析和自我研究。结果。我们讨论了MRI在中枢神经系统特征方面的主要应用。血液流动的运动和血液在图像上的表现之间的关系是复杂的。本文介绍了功能磁共振成像的基本思想和技术。因此,1H MRI和功能MRI两种方法都被用于神经科学。结论。无创MRI和功能性MRI是神经病学的日常诊断方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of MRI in the central nervous system
Introduction. Magnetic Resonance Imaging (MRI) has modified the practice of radiology. MRI is base on safe interaction between radiowaves at a particular frequency and hydrogen nuclei in the body. Metabolic encephalophaties are by definition those disorder of the central nervous system that are not due primarily to structural abnormalities. Aim. Here we present the 1H MRI and functional MRI (fMRI) method applied to diagnosis of disorders of the central nervous system. Material and methods. Analysis of literature and self-research. Results.We have discussed the major MRI applications in the characteristic of the central nervous system. The relationship beteen the motion of flowing blood and the representation of the blood on images is complex. This work is an introduction to the basic ideas and techniques of fMRI. Therefore, both, 1H MRI and functional MRI, methods are ued in neuroscience. Conclusion. Nonivasive MRI and functional MRI are daily diagnostics methods in neurology.
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