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Feasibility of High-Resolution Electrical Mapping for Characterizing Conduction Blocks Created by Gastric Ablation

机译:高分辨率电气映射的可行性,用于表征胃烧蚀产生的传导块

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The interstitial cells of Cajal (ICC) initiate, coordinate and propagate bioelectrical slow wave activity that drives gastric motility. In the healthy human stomach, slow wave activity is highly organized. Gastric motility disorders are associated with dysrhythmias. While ablation is widely used to treat cardiac dysrhythmias, this approach has yet to be trialed in the stomach. In this study, radiofrequency (RF) ablation was applied in pig stomachs in vivo to create targeted electrical conduction blocks. Ablations were performed at temperature control mode (55-70°C), and resultant conduction blocks were identified and verified using high-resolution electrical mapping. Termination of slow wave propagation at ablation sites was confirmed by a decrease in extracellular slow wave amplitude from 1.7 ± 0.2 mV to an undetectable amplitude, as well as spatiotemporal pattern analysis of conduction blocks. The use of high-resolution electrical mapping can now be employed to investigate ablation as a potential therapy for gastric dysrhythmias in motility disorders.
机译:CAJAL(ICC)的间质细胞引发,坐标和传播传播驱动胃动力的生物电慢波活性。在健康的人体胃中,缓慢波动是高度组织的。胃动力障碍与缺血性有关。虽然消融被广泛用于治疗心肌不休眠症,但这种方法尚未在胃中进行试验。在本研究中,射频(RF)消融在体内捕猪胃中施用以产生靶向导电块。在温度控制模式(55-70°C)下进行消融,并使用高分辨率电影识别并验证所得到的传导块。通过从1.7±0.2mV的细胞外慢波幅度降低到不可检测的振幅,以及导电块的时空图案分析,确认在消融位点处的慢波繁殖的终止。现在可以使用高分辨率电映射来调查消融作为运动障碍胃畸形症的潜在疗法。

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