首页> 外文期刊>Heart rhythm: the official journal of the Heart Rhythm Society >Real-time magnetic resonance imaging-guided radiofrequency atrial ablation and visualization of lesion formation at 3 Tesla.
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Real-time magnetic resonance imaging-guided radiofrequency atrial ablation and visualization of lesion formation at 3 Tesla.

机译:实时磁共振成像引导的射频心房消融和3特斯拉病变形成的可视化。

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BACKGROUND: Magnetic resonance imaging (MRI) allows visualization of location and extent of radiofrequency (RF) ablation lesion, myocardial scar formation, and real-time (RT) assessment of lesion formation. In this study, we report a novel 3-Tesla RT -RI based porcine RF ablation model and visualization of lesion formation in the atrium during RF energy delivery. OBJECTIVE: The purpose of this study was to develop a 3-Tesla RT MRI-based catheter ablation and lesion visualization system. METHODS: RF energy was delivered to six pigs under RT MRI guidance. A novel MRI-compatible mapping and ablation catheter was used. Under RT MRI, this catheter was safely guided and positioned within either the left or right atrium. Unipolar and bipolar electrograms were recorded. The catheter tip-tissue interface was visualized with a T1-weighted gradient echo sequence. RF energy was then delivered in a power-controlled fashion. Myocardial changes and lesion formation were visualized with a T2-weighted (T2W) half Fourier acquisition with single-shot turbo spin echo (HASTE) sequence during ablation. RESULTS: RT visualization of lesion formation was achieved in 30% of the ablations performed. In the other cases, either the lesion was formed outside the imaged region (25%) or the lesion was not created (45%) presumably due to poor tissue-catheter tip contact. The presence of lesions was confirmed by late gadolinium enhancement MRI and macroscopic tissue examination. CONCLUSION: MRI-compatible catheters can be navigated and RF energy safely delivered under 3-Tesla RT MRI guidance. Recording electrograms during RT imaging also is feasible. RT visualization of lesion as it forms during RF energy delivery is possible and was demonstrated using T2W HASTE imaging.
机译:背景:磁共振成像(MRI)可以可视化射频(RF)消融病变的位置和范围,心肌疤痕的形成以及病变形成的实时(RT)评估。在这项研究中,我们报告了一种新型的基于3-Tesla RT -RI的猪RF消融模型,并在RF能量传递过程中可视化了心房中病变的形成。目的:本研究的目的是开发一种基于3-Tesla RT MRI的导管消融和病变可视化系统。方法:在RT MRI指导下将射频能量传递给六头猪。使用了一种新型的MRI兼容标测和消融导管。在RT MRI下,该导管被安全地引导并定位在左或右心房内。记录单极和双极电描记图。用T1加权梯度回波序列显示导管尖端-组织界面。然后,RF能量以功率控制的方式传递。在消融期间,通过单次涡轮旋转回波(HASTE)序列的T2加权(T2W)半傅立叶采集,观察心肌变化和病变形成。结果:消融的30%实现了RT可视化的病变形成。在其他情况下,大概是由于组织导管尖端接触不良,或者在成像区域外形成了病变(占25%),或者没有形成病变(占45%)。晚期g增强MRI和宏观组织检查证实了病变的存在。结论:可以在3-Tesla RT MRI指导下导航与MRI兼容的导管,并安全地输送RF能量。在RT成像过程中记录心电图也是可行的。在射频能量输送过程中形成病变的RT可视化是可能的,并已使用T2W HASTE成像进行了演示。

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