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利用超快声电成像技术绘制生物电流密度图:在跳动的大鼠心脏中的应用。

Mapping Biological Current Densities With Ultrafast Acoustoelectric Imaging: Application to the Beating Rat Heart.

出版信息

IEEE Trans Med Imaging. 2019 Aug;38(8):1852-1857. doi: 10.1109/TMI.2019.2898090. Epub 2019 Feb 7.

Abstract

Ultrafast acoustoelectric imaging (UAI) is a novel method for the mapping of biological current densities, which may improve the diagnosis and monitoring of cardiac activation diseases such as arrhythmias. This paper evaluates the feasibility of performing UAI in beating rat hearts. A previously described system based on a 256-channel ultrasound research platform fitted with a 5-MHz linear array was used for simultaneous UAI, ultrafast B-mode, and electrocardiogram (ECG) recordings. In this paper, rat hearts (n = 4) were retroperfused within a Langendorff isolated heart system. A pair of Ag/Cl electrodes were positioned on the epicardium to simultaneously record ECG and UAI signals for imaging frame rates of up to 1000 Hz and a mechanical index of 1.3. To account for the potential effect of motion on the UAI maps, acquisitions for n = 3 hearts were performed with and without suppression of the mechanical contraction using 2,3-butanedione monoxime. Current densities were detected for all four rats in the region of the atrio-ventricular node, with an average contrast-to-noise ratios of 12. The UAI signals' frequency matched the sinus rhythm, even without mechanical contraction, suggesting that the signals measured correspond to physiological electrical activation. UAI signals appeared at the apex and within the ventricular walls with a delay estimated at 29 ms. Finally, the signals from different electrode positions along the myocardium wall showed the possibility of mapping the electrical activation throughout the heart. These results show the potential of UAI for cardiac activation mapping in vivo and in real time.

摘要

超快速声电成像(UAI)是一种用于生物电流密度映射的新方法,它可能改善心律失常等心脏激活疾病的诊断和监测。本文评估了在跳动的大鼠心脏中进行 UAI 的可行性。使用先前描述的基于配备 5MHz 线性阵列的 256 通道超声研究平台的系统,同时进行 UAI、超快速 B 模式和心电图(ECG)记录。在本文中,将大鼠心脏(n=4)在 Langendorff 分离心脏系统中逆行灌注。一对 Ag/Cl 电极放置在心外膜上,以同时记录 ECG 和 UAI 信号,成像帧率高达 1000Hz,机械指数为 1.3。为了考虑运动对 UAI 图的潜在影响,使用 2,3-丁二酮单肟抑制机械收缩,对 n=3 只心脏进行了采集。在房室结区域检测到了所有四只大鼠的电流密度,平均对比噪声比为 12。UAI 信号的频率与窦性节律匹配,即使没有机械收缩,这表明测量的信号对应于生理电激活。UAI 信号出现在心尖和心室壁内,延迟估计为 29ms。最后,来自心肌壁上不同电极位置的信号显示了在整个心脏上进行电激活映射的可能性。这些结果表明 UAI 具有在体内实时进行心脏激活映射的潜力。

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