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心脏 MRI 可视化用于室性心动过速消融。

Cardiac MRI visualization for ventricular tachycardia ablation.

机构信息

Division of Image Processing, Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

Int J Comput Assist Radiol Surg. 2012 Sep;7(5):753-67. doi: 10.1007/s11548-012-0776-4. Epub 2012 Jul 3.

Abstract

OBJECTIVE

The integrated visualization of cardiac MRI during a ventricular tachycardia (VT) mapping and ablation procedure would provide improved catheter guidance and tissue assessment. We developed a system for and explored the added value of simultaneous visualization of intracardiac voltage measurements and MRI-derived myocardial scar information during VT ablation procedures.

METHOD

We propose the use of a synchronized 3D and 2D view. In 3D, the catheter will be guided optimally by assessing 3D scar characteristics and its relation to the ventricular anatomy. In 2D, a detailed assessment of the tissue can be made. We developed several 3D visualization techniques, including volume rendering of the scar and myocardial surfaces colored according to the voltage measurements. We also visualized context structures in the heart. For the 2D view, we proposed showing three adjacent slices simultaneously. To link the 3D with the 2D view, we added a linking plane and linking contours; the slice level shown in the 2D view is indicated in the 3D view.

RESULTS

We evaluated our method via a case study during which we simulated the visual environment of an ablation procedure. The MRI-based volume rendering of scar tissue and the linking between the 3D and 2D views were both positively received. However, the visualization of the voltage measurements was found to be hard to interpret, partly due to the perceptually suitable but non-standard colormap.

CONCLUSIONS

Based on this study, we can conclude that our approach of displaying MRI data and integrating it with voltage measurements has potential to improve VT ablation procedures.

摘要

目的

在室性心动过速(VT)标测和消融过程中整合心脏 MRI 可视化,可提供更好的导管引导和组织评估。我们开发了一种系统,并探索了在 VT 消融过程中同时可视化心内电压测量和 MRI 衍生心肌瘢痕信息的附加价值。

方法

我们提出使用同步的 3D 和 2D 视图。在 3D 中,通过评估 3D 瘢痕特征及其与心室解剖结构的关系,可对导管进行最佳引导。在 2D 中,可以对组织进行详细评估。我们开发了几种 3D 可视化技术,包括瘢痕的体积渲染和根据电压测量结果对心肌表面进行彩色标记。我们还可视化了心脏中的结构。对于 2D 视图,我们建议同时显示三个相邻的切片。为了将 3D 与 2D 视图联系起来,我们添加了一个链接平面和链接轮廓;2D 视图中显示的切片级别在 3D 视图中指示。

结果

我们通过一个模拟消融过程的案例研究来评估我们的方法。基于 MRI 的瘢痕组织体积渲染和 3D 与 2D 视图之间的链接都得到了积极的反馈。然而,电压测量的可视化被认为难以解释,部分原因是感知上合适但非标准的颜色图。

结论

基于这项研究,我们可以得出结论,我们显示 MRI 数据并将其与电压测量结果集成的方法具有改善 VT 消融程序的潜力。

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