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一种新型开源软件为基础的高精度工作流程,用于心脏放射消融中的靶区定义。

A novel open-source software-based high-precision workflow for target definition in cardiac radioablation.

机构信息

Hannover Heart Rhythm Center, Department of Cardiology and Angiology, Hannover Medical School, Hannover, Germany.

Department of Radiotherapy, Hannover Medical School, Hannover, Germany.

出版信息

J Cardiovasc Electrophysiol. 2020 Oct;31(10):2689-2695. doi: 10.1111/jce.14660. Epub 2020 Jul 21.

Abstract

INTRODUCTION

Noninvasive ablative radiotherapy of cardiac arrhythmias (stereotactic ablative body radiation) has shown promising initial results. Precise targeting of the arrhythmogenic substrate is paramount to limit adverse effects to healthy myocardium, organs at risk, and cardiac implantable electronic devices. Using electroanatomic maps for treatment planning is technically challenging.

METHODS AND RESULTS

Using the free open-source 3D Slicer software platform we established a workflow for high-precision target definition based on electroanatomic maps. An import plug-in for 3D Slicer has been designed that reads electroanatomic maps generated with three mapping systems in widespread clinical use. Using our proposed workflow in a real-world patient case we were able to align the map to the computed tomography (CT) with a mean distance of 3.1 mm. Thus, points defined on the map were translated into CT space with high accuracy and a radiotherapy treatment volume was defined in CT space based on these map-derived points.

CONCLUSION

We describe a novel high-precision target definition method for stereotactic ablation of cardiac arrhythmias. Multimodal integration of the electroanatomic map with the planning CT allows for highly accurate localization of previously identified electrophysiological features in CT space. It remains to be shown whether this novel planning workflow leads to superior ablation outcomes when compared with other approaches.

摘要

简介

心脏心律失常的无创消融性放射治疗(立体定向消融体放射治疗)已显示出有希望的初步结果。精确靶向心律失常基质对于限制对健康心肌、危险器官和心脏植入式电子设备的不良影响至关重要。使用电解剖图进行治疗计划在技术上具有挑战性。

方法和结果

我们使用免费的开源 3D Slicer 软件平台,基于电解剖图建立了高精度目标定义的工作流程。我们设计了一个 3D Slicer 的导入插件,可以读取三种广泛应用于临床的映射系统生成的电解剖图。在真实患者病例中使用我们提出的工作流程,我们能够将图谱以平均 3.1mm 的距离与 CT 对齐。因此,图谱上定义的点可以以高精度转换到 CT 空间,并根据这些图谱衍生的点在 CT 空间中定义放射治疗体积。

结论

我们描述了一种用于心脏心律失常立体定向消融的新型高精度目标定义方法。电解剖图与计划 CT 的多模态整合允许在 CT 空间中对先前确定的电生理特征进行高度精确的定位。与其他方法相比,这种新的规划工作流程是否会导致更好的消融结果还有待观察。

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