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Three-dimensional fusion of Shear Wave Imaging and electro-anatomical mapping for intracardiac radiofrequency ablation monitoring

机译:剪切波成像和电解剖标测的三维融合,用于心脏内射频消融监测

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Electroanatomical Mapping (EAM) provides electrophysiologists with a three-dimensional visualization of endocardial geometry and electrical activity, used to guide transcatheter ablation (TCA) treatment of arrhythmia. Acoustic Radiation Force Impulse (ARFI) and Shear Wave Imaging (SWI) are ultrasonic methods of imaging the mechanical properties of the myocardium that may allow direct visualization of ablation lesion formation, and can be acquired with Intracardiac Echocardiography (ICE) imaging catheters, which are commonly used to guide TCA. The mechanical substrate mapping holds promise to complement the electrical data to improve the safety and efficacy of the procedure. This work demonstrates the use of an image fusion system to stitch a series of in vivo planar ARFI or SWI images together into a 3-D volume of substrate elasticity.
机译:电解剖图(EAM)为电生理学家提供心内膜几何形状和电活动的三维可视化,用于指导经导管消融(TCA)治疗心律失常。声辐射力脉冲(ARFI)和剪切波成像(SWI)是对心肌的机械特性进行成像的超声方法,可直接观察消融病变的形成,可通过心内超声心动图(ICE)成像导管获得。通常用于指导TCA。机械基板映射有望对电子数据进行补充,以提高该过程的安全性和有效性。这项工作演示了如何使用图像融合系统将一系列体内平面ARFI或SWI图像缝合在一起,形成3D体积的底物弹性。

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