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磁共振成像期间心电图信号的采集。

Acquisition of electrocardiogram signals during magnetic resonance imaging.

作者信息

Oster Julien, Clifford Gari D

机构信息

IADI, U947, INSERM, Université de Lorraine, CHRU Nancy, Vandoeuvre-les-Nancy, France.

出版信息

Physiol Meas. 2017 Jun 22;38(7):R119-R142. doi: 10.1088/1361-6579/aa6e8c.

Abstract

The recording of the electrocardiogram (ECG) during magnetic resonance imaging (MRI) acquisition is of great interest and importance. Firstly, MRI acquisition is a relatively slow process, which therefore complicates the imaging of moving organs. Cardiac MRI requires the development of strategies for acquiring high quality images, which is mainly achieved by synchronising the image acquisition with a specific time during the cardiac cycle. The ECG is used to monitor the heart's activity, and the detection of the largest and steepest peak in the cardiac cycle (the QRS complex) triggers the acquisition of slices of the k-space. Secondly, patients undergoing an MRI examination need to be monitored for safety during the procedure, and therefore ECG signals are used to track their cardiovascular state in real time. However, there are significant barriers to the accurate observation and processing of the ECG during MRI acquisition. In particular, the flow of charged blood particles through the large applied magnetic field leads to an extra current source, known as the magnetohdrodymanic (MHD) effect. This review article discusses these barriers and state-of-the-art solutions. An overview of the relevant technology including hardware and applications are described. The development of new software tools for the processing of the ECG signals acquired during MRI is also detailed. These developments include the design of specific QRS detection algorithms, which are able to distinguish QRS complexes from the MHD effect but also the gradient artefacts. Different techniques for the suppression of the gradient artefacts are also presented as well as the most challenging problem to-date-the problem of separating the MHD effect from the ECG. The article concludes by summarising the advantages of using ECG signals during MRI, but also presents the current limitations of modern analysis techniques in this domain. The most promising avenues of research are also discussed and suggestions for new methodological analyses for the development of this field are given.

摘要

在磁共振成像(MRI)采集过程中记录心电图(ECG)极具意义和重要性。首先,MRI采集是一个相对缓慢的过程,这使得对运动器官的成像变得复杂。心脏MRI需要制定获取高质量图像的策略,这主要通过将图像采集与心动周期中的特定时间同步来实现。ECG用于监测心脏活动,检测心动周期中最大且最陡的峰值(QRS波群)会触发k空间切片的采集。其次,接受MRI检查的患者在检查过程中需要进行安全监测,因此ECG信号用于实时跟踪他们的心血管状态。然而,在MRI采集过程中准确观察和处理ECG存在重大障碍。特别是,带电血液粒子在强外加磁场中的流动会导致一个额外的电流源,即磁流体动力学(MHD)效应。这篇综述文章讨论了这些障碍以及最新的解决方案。描述了包括硬件和应用在内的相关技术概述。还详细介绍了用于处理MRI采集期间获取的ECG信号的新软件工具的开发。这些进展包括设计特定的QRS检测算法,该算法能够将QRS波群与MHD效应以及梯度伪影区分开来。还介绍了抑制梯度伪影的不同技术以及迄今为止最具挑战性的问题——将MHD效应与ECG分离的问题。文章最后总结了在MRI期间使用ECG信号的优点,但也指出了该领域现代分析技术目前的局限性。还讨论了最有前途的研究途径,并给出了该领域新方法分析发展的建议。

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