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Rate Control in Atrial Fibrillation by Cooling: Effect of Temperature on Dromotropy in Perfused Rabbit Hearts

机译:降温控制心房纤颤的速率:温度对灌注兔心脏同质性的影响

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摘要

Background. Cooling has emerged as a therapeutic option in critically ill patients (especially after cardiac resuscitation) and might also have a negative dromotropic effect in atrial fibrillation. We sought to determine the impact of cooling on electrophysiologic properties of Langendorff-perfused rabbit hearts. Methods and Results. In 20 isolated Langendorff-perfused rabbit hearts, the temperature of the tissue bath was changed between 17 and 42°C. With decreasing temperature, significant increases of the spontaneous sinus cycle length, decreases of the mean ventricular heart rate during atrial fibrillation, and relevant increases of atrial and ventricular refractory periods were observed (ANOVA P < .01). Conclusions. Cardiac hypothermia leads to a significant drop of mean ventricular heart rate during atrial fibrillation. Negative chronotropy and dromotropy induced by moderate cardiac hypothermia might be a feasible therapeutic approach in patients with hemodynamically relevant tachyarrhythmias in a CCU/ICU setting.
机译:背景。降温已成为重症患者的一种治疗选择(尤其是在心脏复苏后),并且在心房纤颤中可能还具有负性变力作用。我们试图确定冷却对Langendorff灌注兔心脏电生理特性的影响。方法和结果。在20只离体的Langendorff灌注兔心脏中,组织浴的温度在17至42°C之间变化。随着温度降低,自发窦周期长度显着增加,在心房纤颤期间平均心室心律降低,并且观察到心房和心室不应期相应增加(ANOVA P <.01)。结论。心脏低温会导致心房纤颤期间平均心室率显着下降。在CCU / ICU背景下,与血液动力学相关的快速性心律失常患者,中等程度的体温过低引起的负变时性和同质性可能是一种可行的治疗方法。

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