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使用电流密度图可视化心脏偶极子:利用心磁图检测心电图无法检测到的心脏电流。

Visualization of cardiac dipole using a current density map: detection of cardiac current undetectable by electrocardiography using magnetocardiography.

作者信息

Ikefuji Hiroyuki, Nomura Masahiro, Nakaya Yutaka, Mori Toshifumi, Kondo Noriyasu, Ieishi Kiyoshi, Fujimoto Sayuri, Ito Susumu

机构信息

Department of Cardiology, JA Kochi Hospital, Kochi, Japan.

出版信息

J Med Invest. 2007 Feb;54(1-2):116-23. doi: 10.2152/jmi.54.116.

Abstract

A close relationship exists between electric current and the magnetic field. However, electricity and magnetism have different physical characteristics, and magnetocardiography (MCG) may provide information on cardiac current that is difficult to obtain by electrocardiography (ECG). In the present study, we investigated the issue of whether the current density map method, in which cardiac current is estimated from the magnetic gradient, facilitates the visualization of cardiac current undetectable by ECG. The subjects were 50 healthy adults (N group), 40 patients with left ventricular overloading (LVO group), 15 patients with right ventricular overloading (RVO group), 10 patients with an old inferior myocardial infarction (OMI group), and 30 patients with diabetes mellitus (DM group). MCGs were recorded with a second derivative superconducting quantum interference device (SQUID) gradiometer using liquid helium. Isopotential maps and current density maps from unipolar precordial ECG leads and MCGs, respectively, were prepared, and the cardiac electric current was examined. The current density map at the ventricular depolarization phase showed one peak of current density in the N group. However, in the OMI group, the current density map showed multiple peaks of current density areas. In the RVO group, two peaks of current densities were detected at the right superior region and left thoracic region and these two diploles appeared to be from the right and left ventricular derived cardiac currents, respectively. Moreover, there was a significant correlation between the magnitude of the current density from the right ventricle and the systolic pulmonary arterial pressure. The current density map at the ventricular repolarization phase in the N group showed only a single current source. However, abnormal current sources in the current density maps were frequently detected even in patients showing no abnormalities on isopotential maps in the LVO, DM, and OMI groups. The findings herein suggest that opposing dipoles of the ventricular depolarization and repolarization vectors were summed and evaluated as a single dipole in the electrocardiogram. However, MCG facilitated the detection of multiple dipoles because of its superior spatial resolution as well as difference in physical properties between magnetic and electrical fields. Our results suggest that MCG with a current density map is useful for detecting cardiac current undetectable by ECG in an early stage.

摘要

电流与磁场之间存在密切关系。然而,电和磁具有不同的物理特性,磁心动图(MCG)可能提供心电图(ECG)难以获得的心脏电流信息。在本研究中,我们调查了通过磁梯度估计心脏电流的电流密度图方法是否有助于可视化ECG检测不到的心脏电流这一问题。受试者包括50名健康成年人(N组)、40名左心室负荷过重患者(LVO组)、15名右心室负荷过重患者(RVO组)、10名陈旧性下壁心肌梗死患者(OMI组)和30名糖尿病患者(DM组)。使用液氦通过二阶导数超导量子干涉装置(SQUID)梯度仪记录MCG。分别制备了单极胸前导联心电图和MCG的等电位图和电流密度图,并对心脏电流进行了检查。心室去极化期的电流密度图在N组显示一个电流密度峰值。然而,在OMI组中,电流密度图显示出多个电流密度区域峰值。在RVO组中,在右上区域和左胸区域检测到两个电流密度峰值,这两个偶极似乎分别来自右心室和左心室产生的心脏电流。此外,右心室电流密度大小与收缩期肺动脉压之间存在显著相关性。N组心室复极化期的电流密度图仅显示一个电流源。然而,在LVO组、DM组和OMI组中,即使在等电位图上没有异常表现的患者中,也经常在电流密度图中检测到异常电流源。本文的研究结果表明,心室去极化和复极化向量的相反偶极在心电图中被求和并评估为单个偶极。然而,由于MCG具有卓越的空间分辨率以及磁场和电场之间的物理特性差异,它有助于检测多个偶极。我们的结果表明,带有电流密度图的MCG有助于早期检测ECG检测不到的心脏电流。

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