Magnetization transfer contrast in magnetic resonance imaging.

Magnetic resonance quarterly Pub Date : 1992-06-01
R S Balaban, T L Ceckler
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Abstract

Magnetization transfer contrast (MTC) in magnetic resonance imaging (MRI) is the result of selectively observing the interaction of bulk water protons with the protons contained in macromolecules of a tissue. Since different tissues have different macromolecular compositions, the MTC can generate very high tissue contrast that is based on well-defined physiochemical properties. This is accomplished by combining a saturation transfer technique with standard MRI procedures. The specific practical and theoretical aspects of saturation transfer as it applies to the generation of MTC are reviewed and discussed. In the last 3 years, MTC has been applied to the study of the body, with useful applications demonstrated in evaluating the morphology of the knee joint, eye, brain, breast, and heart. The application of MTC to accentuate MR angiography and contrast agent studies has also been demonstrated. Thus, MTC is becoming another tool towards maximizing the quality and diagnostic potential of MRI. Recent studies on isolated macromolecules have suggested that the MTC effect is specific to the surface chemistry and correlation time of the macromolecules. These latter results indicate that the magnetization transfer process may provide a unique quantitative method of MR tissue characterization based on macromolecule dynamics and chemistry.

磁共振成像中的磁化转移对比。
磁共振成像(MRI)中的磁化转移对比(MTC)是选择性地观察组织大分子中含有的质子与大块水质子相互作用的结果。由于不同的组织有不同的大分子组成,MTC可以产生非常高的组织对比度,这是基于明确的物理化学性质。这是通过将饱和转移技术与标准MRI程序相结合来实现的。本文回顾和讨论了饱和转移在MTC生成中的具体实践和理论问题。在过去的3年中,MTC已被应用于身体的研究,在评估膝关节、眼睛、大脑、乳房和心脏的形态学方面得到了有用的应用。MTC在MR血管造影和造影剂研究中的应用也得到了证实。因此,MTC正在成为提高MRI质量和诊断潜力的另一种工具。近年来对分离大分子的研究表明,MTC效应与大分子的表面化学性质和相关时间有关。这些结果表明,磁化传递过程可以为基于大分子动力学和化学的磁共振组织表征提供一种独特的定量方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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