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Acute Changes in P-Wave Morphology by Pulmonary Vein Isolation in Atrial Fibrillation Patients

机译:心房颤动患者肺静脉隔离引起的P波形态的急性变化

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Pulmonary vein (PV) plays an important role in atrial fibrillation (AF) initiation, progression, and stability. Successful PV isolation (PVI), either by radiofrequency catheter or Cryoballoon ablation, may terminate AF and prevent its recurrence. Whereas, incomplete PV isolation or reconnection of isolated PVs underlies mechanisms of AF recurrence. Hence, defining parameters able to predict a successful PVI and detect reconnections can assist clinicians in treatment of AF patients. Here, we developed a highly detailed human atrial model to simulate PVI and its acute effect on the P-wave morphology. Afterwards, the simulation results were compared and validated by recorded ECGs from patients before and after PVI procedure. In both simulation data and clinical recordings, we observed morphological changes in P-wave after PVI. More importantly our simulation helped us to find electrode positions, in which the differences in P-wave morphology before and after PVI were more pronounced.
机译:肺静脉(PV)在房颤(AF)的起始,进展和稳定性中起重要作用。通过射频导管或冷冻球消融术成功进行PV隔离(PVI)可能会终止房颤并阻止其复发。而不完全的PV隔离或孤立的PV的重新连接是AF复发的基础。因此,定义能够预测成功的PVI并检测重新连接的参数可以帮助临床医生治疗AF患者。在这里,我们开发了一个非常详细的人体心房模型来模拟PVI及其对P波形态的急性影响。之后,通过记录患者PVI手术前后的心电图对仿真结果进行比较和验证。在模拟数据和临床记录中,我们观察到PVI后P波的形态变化。更重要的是,我们的仿真帮助我们找到了电极位置,其中PVI前后P波形态的差异更加明显。

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