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心脏的扩散加权成像和扩散张量成像:主要进展

Diffusion-weighted imaging and diffusion tensor imaging of the heart : major developments.

作者信息

Mazur Weronika, Krzyżak Artur T, Hennel Franciszek

机构信息

Faculty of Physics and Applied Computer Science, AGH University of Science and Technology, Krakow, Poland.

Faculty of Geology, Geophysics and Environmental Protection, AGH University of Science and Technology, Krakow, Poland.

出版信息

Postepy Kardiol Interwencyjnej. 2022 Dec;18(4):350-359. doi: 10.5114/aic.2022.121345. Epub 2022 Nov 19.

Abstract

Diffusion-weighted magnetic resonance imaging (DWI) is a powerful diagnostic tool. Contrast in DWI images is dictated by the differences in diffusion of water in tissues, which depends on the tissue type, hydration and fluid composition. Therefore DWI can differentiate between hard and soft tissues, as well as visualize their condition, such as edema, necrosis or fibrosis. Diffusion tensor imaging (DTI) is a DWI technique which additionally delivers information about the microstructure. In cardiovascular applications DWI/DTI can non-invasively characterize the acute to chronic phase of the area at risk and microstructural dynamics without the need to use contrast agents. However, cardiac DWI/DTI differs from other applications due to serious anatomic and technologic challenges. Over the years, scientists have stepped up overcoming more and more advanced obstacles associated with complex 3D myocardial motions, breathing, blood flow and perfusion. The aim of this article is to review milestone technologic advances in DWI/DTI of the heart . The discussed development begins with the adjustment of the diffusion imaging block to the electrocardiogram-based most quiescent phase, next considers different pulse sequence designs for first-, second- and higher-order motion compensation and SNR improvement, and ends up with prospects for further developments. Reviewed papers show great progress in this research area, but the gap between the scientific development and common clinical practice is tremendous. Cardiac DWI/DTI has promising clinical relevance and its addition to routine imaging techniques of patients with heart disease may empower clinical diagnosis.

摘要

扩散加权磁共振成像(DWI)是一种强大的诊断工具。DWI图像中的对比度取决于组织中水分子扩散的差异,而这又取决于组织类型、水合作用和液体成分。因此,DWI可以区分硬组织和软组织,并可视化它们的状况,如水肿、坏死或纤维化。扩散张量成像(DTI)是一种DWI技术,它还能提供有关微观结构的信息。在心血管应用中,DWI/DTI可以在无需使用造影剂的情况下,非侵入性地表征危险区域从急性期到慢性期的特征以及微观结构动力学。然而,由于严重的解剖学和技术挑战,心脏DWI/DTI与其他应用有所不同。多年来,科学家们一直在加紧克服与复杂的三维心肌运动、呼吸、血流和灌注相关的越来越先进的障碍。本文的目的是回顾心脏DWI/DTI的里程碑式技术进展。所讨论的发展历程始于将扩散成像模块调整到基于心电图的最静止期,接着考虑用于一阶、二阶和更高阶运动补偿以及提高信噪比的不同脉冲序列设计,最后展望进一步发展的前景。综述的论文表明该研究领域取得了巨大进展,但科学发展与临床常规实践之间的差距仍然巨大。心脏DWI/DTI具有广阔的临床应用前景,将其添加到心脏病患者的常规成像技术中可能会增强临床诊断能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ac0/10031660/5f089fc06c29/PWKI-18-48229-g001.jpg

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