您想用磁共振成像技术为髓鞘成像?用于髓鞘成像的磁感应强度源分离。

Jongho Lee, Sooyeon Ji, Se-Hong Oh
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引用次数: 0

摘要

长期以来,研究人员一直致力于通过核磁共振成像有效地观察大脑中的髓鞘分布,这对科学研究和临床应用都具有重要意义。随着时间的推移,髓鞘水成像、磁化传递成像和弛豫成像等各种方法相继问世,每种方法都有其独特的优势和局限性。最近,一种名为磁感应源分离的创新技术出现了,它以二磁感应图的形式为髓鞘引入了一种新的替代生物标记。本文全面回顾了这一前沿方法,介绍了磁感应强度、磁感应强度成像的基本概念,并验证了二磁感应强度图作为髓鞘生物标记物可间接测量髓鞘含量。此外,论文还探讨了数据采集和处理的重要方面,为读者提供了实用的见解。论文还将髓鞘成像方法与现有的髓鞘成像方法进行了比较,并讨论了当前和未来的临床和科学应用,以提供对该技术的整体理解。该著作旨在为进入这一充满活力且快速发展的领域的新手提供基础资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
So You Want to Image Myelin Using MRI: Magnetic Susceptibility Source Separation for Myelin Imaging.

In MRI, researchers have long endeavored to effectively visualize myelin distribution in the brain, a pursuit with significant implications for both scientific research and clinical applications. Over time, various methods such as myelin water imaging, magnetization transfer imaging, and relaxometric imaging have been developed, each carrying distinct advantages and limitations. Recently, an innovative technique named as magnetic susceptibility source separation has emerged, introducing a novel surrogate biomarker for myelin in the form of a diamagnetic susceptibility map. This paper comprehensively reviews this cutting-edge method, providing the fundamental concepts of magnetic susceptibility, susceptibility imaging, and the validation of the diamagnetic susceptibility map as a myelin biomarker that indirectly measures myelin content. Additionally, the paper explores essential aspects of data acquisition and processing, offering practical insights for readers. A comparison with established myelin imaging methods is also presented, and both current and prospective clinical and scientific applications are discussed to provide a holistic understanding of the technique. This work aims to serve as a foundational resource for newcomers entering this dynamic and rapidly expanding field.

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