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Noninvasive low-frequency electromagnetic stimulation of the left stellate ganglion reduces myocardial infarction-induced ventricular arrhythmia

机译:左星状神经节的无创低频电磁刺激可减少心肌梗死引起的心律失常

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摘要

Noninvasive magnetic stimulation has been widely used in autonomic disorders in the past few decades, but few studies has been done in cardiac diseases. Recently, studies showed that low-frequency electromagnetic field (LF-EMF) might suppress atrial fibrillation by mediating the cardiac autonomic nervous system. In the present study, the effect of LF-EMF stimulation of left stellate ganglion (LSG) on LSG neural activity and ventricular arrhythmia has been studied in an acute myocardium infarction canine model. It is shown that LF-EMF stimulation leads to a reduction both in the neural activity of LSG and in the incidence of ventricular arrhythmia. The obtained results suggested that inhibition of the LSG neural activity might be the causal of the reduction of ventricular arrhythmia since previous studies have shown that LSG hyperactivity may facilitate the incidence of ventricular arrhythmia. LF-EMF stimulation might be a novel noninvasive substitute for the existing implant device-based electrical stimulation or sympathectomy in the treatment of cardiac disorders.
机译:在过去的几十年中,无创磁刺激已被广泛用于植物神经疾病,但在心脏病方面的研究很少。最近,研究表明,低频电磁场(LF-EMF)可能通过介导心脏自主神经系统来抑制房颤。在本研究中,已经在急性心肌梗死犬模型中研究了LF-EMF刺激左星状神经节(LSG)对LSG神经活动和室性心律失常的影响。结果表明,LF-EMF刺激导致LSG的神经活动和室性心律失常的发生率降低。获得的结果表明,抑制LSG神经活动可能是导致室性心律失常减少的原因,因为先前的研究表明,LSG过度活跃可能促进了室性心律失常的发生。 LF-EMF刺激可能是现有的基于植入设备的电刺激或交感神经切除术在心脏疾病治疗中的新型无创替代品。

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