Wave trains induced by circularly polarized electric fields in cardiac tissues

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作者
Xia Feng
Xiang Gao
Juan-Mei Tang
Jun-Ting Pan
Hong Zhang
机构
[1] Zhejiang University,Zhejiang Institute of Modern Physics and Department of Physics
[2] School of Physics and Information Technology,undefined
[3] Shaanxi Normal University,undefined
[4] Institute of Physical Oceanography and Ocean College,undefined
[5] Zhejiang University,undefined
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Clinically, cardiac fibrillation caused by spiral and turbulent waves can be terminated by globally resetting electric activity in cardiac tissues with a single high-voltage electric shock, but it is usually associated with severe side effects. Presently, a promising alternative uses wave emission from heterogeneities induced by a sequence of low-voltage uniform electric field pulses. Nevertheless, this method can only emit waves locally near obstacles in turbulent waves and thereby requires multiple obstacles to globally synchronize myocardium and thus to terminate fibrillation. Here we propose a new approach using wave emission from heterogeneities induced by a low-voltage circularly polarized electric field (i.e., a rotating uniform electric field). We find that, this approach can generate circular wave trains near obstacles and they propagate outwardly. We study the characteristics of such circular wave trains and further find that, the higher-frequency circular wave trains can effectively suppress spiral turbulence.
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