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在三维可兴奋介质通用模型中通过电场去除心脏组织中的固定螺旋波。

Removal of pinned scroll waves in cardiac tissues by electric fields in a generic model of three-dimensional excitable media.

作者信息

Pan De-Bei, Gao Xiang, Feng Xia, Pan Jun-Ting, Zhang Hong

机构信息

Zhejiang Institute of Modern Physics and Department of Physics, Zhejiang University, Hangzhou 310027, China.

School of Physics and Information Technology, Shaanxi Normal University, Xi'an 710062, China.

出版信息

Sci Rep. 2016 Feb 24;6:21876. doi: 10.1038/srep21876.

Abstract

Spirals or scroll waves pinned to heterogeneities in cardiac tissues may cause lethal arrhythmias. To unpin these life-threatening spiral waves, methods of wave emission from heterogeneities (WEH) induced by low-voltage pulsed DC electric fields (PDCEFs) and circularly polarized electric fields (CPEFs) have been used in two-dimensional (2D) cardiac tissues. Nevertheless, the unpinning of scroll waves in three-dimensional (3D) cardiac systems is much more difficult than that of spiral waves in 2D cardiac systems, and there are few reports on the removal of pinned scroll waves in 3D cardiac tissues by electric fields. In this article, we investigate in detail the removal of pinned scroll waves in a generic model of 3D excitable media using PDCEF, AC electric field (ACEF) and CPEF, respectively. We find that spherical waves can be induced from the heterogeneities by these electric fields in initially quiescent excitable media. However, only CPEF can induce spherical waves with frequencies higher than that of the pinned scroll wave. Such higher-frequency spherical waves induced by CPEF can be used to drive the pinned scroll wave out of the cardiac systems. We hope this remarkable ability of CPEF can provide a better alternative to terminate arrhythmias caused by pinned scroll waves.

摘要

固定在心脏组织异质性上的螺旋波或卷曲波可能会引发致命性心律失常。为了解除这些危及生命的螺旋波,通过低压脉冲直流电场(PDCEF)和圆极化电场(CPEF)诱导的异质性波发射方法(WEH)已被应用于二维(2D)心脏组织中。然而,在三维(3D)心脏系统中解除卷曲波比在二维心脏系统中解除螺旋波要困难得多,并且关于通过电场去除三维心脏组织中固定卷曲波的报道很少。在本文中,我们分别详细研究了使用PDCEF、交流电场(ACEF)和CPEF在三维可兴奋介质的通用模型中去除固定卷曲波的情况。我们发现,在初始静止的可兴奋介质中,这些电场可以从异质性中诱导出球面波。然而,只有CPEF能够诱导出频率高于固定卷曲波的球面波。由CPEF诱导的这种高频球面波可用于将固定的卷曲波驱出心脏系统。我们希望CPEF的这种显著能力能够为终止由固定卷曲波引起的心律失常提供更好的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cab/4764807/e040c0fd6bb8/srep21876-f1.jpg

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