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首页> 外文期刊>Science translational medicine >Reversible cardiac conduction block and defibrillation with high-frequency electric field.
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Reversible cardiac conduction block and defibrillation with high-frequency electric field.

机译:可逆的心脏传导阻滞和高频电场除颤。

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摘要

Electrical impulse propagation is an essential function in cardiac, skeletal muscle, and nervous tissue. Abnormalities in cardiac impulse propagation underlie lethal reentrant arrhythmias, including ventricular fibrillation. Temporary propagation block throughout the ventricular myocardium could possibly terminate these arrhythmias. Electrical stimulation has been applied to nervous tissue to cause reversible conduction block, but has not been explored sufficiently in cardiac tissue. We show that reversible propagation block can be achieved in cardiac tissue by holding myocardial cells in a refractory state for a designated period of time by applying a sustained sinusoidal high-frequency alternating current (HFAC); in doing so, reentrant arrhythmias are terminated. We demonstrate proof of concept using several models, including optically mapped monolayers of neonatal rat ventricular cardiomyocytes, Langendorff-perfused guinea pig and rabbit hearts, intact anesthetized adult rabbits, and computer simulations of whole-heart impulse propagation. HFAC may be an effective and potentially safer alternative to direct current application, currently used to treat ventricular fibrillation.
机译:电脉冲传播是心脏,骨骼肌和神经组织的基本功能。心脏冲动传播的异常是致命的折返性心律不齐的原因,包括心室纤颤。整个心室心肌的临时传播阻滞可能会终止这些心律不齐。电刺激已应用于神经组织以引起可逆的传导阻滞,但尚未在心脏组织中进行充分研究。我们表明,通过施加持续的正弦高频交流电(HFAC),将心肌细胞保持在难治状态达指定的时间段,可以在心脏组织中实现可逆的传播阻滞。这样做可终止折返性心律不齐。我们使用几种模型演示了概念验证,包括新生大鼠心室心肌细胞的光学映射单层,Langendorff灌注的豚鼠和兔子心脏,完整麻醉的成年兔子以及全心冲动传播的计算机模拟。 HFAC可能是目前用于治疗心室纤颤的直流电应用的一种有效且可能更安全的替代方法。

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