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Rapid fusion of 2D X-ray fluoroscopy with 3D multislice CT for image-guided electrophysiology procedures

机译:用3D多层CT快速融合2D X射线荧光镜,用于图像引导的电生理程序

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Interventional cardiac electrophysiology (EP) procedures are typically performed under X-ray fluoroscopy for visualizing catheters and EP devices relative to other highly-attenuating structures such as the thoracic spine and ribs. These projections do not however contain information about soft-tissue anatomy and there is a recognized need for fusion of conventional fluoroscopy with pre-operatively acquired cardiac multislice computed tomography (MSCT) volumes. Rapid 2D-3D integration in this application would allow for real-time visualization of all catheters present within the thorax in relation to the cardiovascular anatomy visible in MSCT. We present a method for rapid fusion of 2D X-ray fluoroscopy with 3D MSCT that can facilitate EP mapping and interventional procedures by reducing the need for intra-operative contrast injections to visualize heart chambers and specialized systems to track catheters within the cardiovascular anatomy. We use hardware-accelerated ray-casting to compute digitally reconstructed radiographs (DRRs) from the MSCT volume and iteratively optimize the rigid-body pose of the volumetric data to maximize the similarity between the MSCT-derived DRR and the intra-operative X-ray projection data.
机译:介入心脏电生理学(EP)程序通常在X射线荧光镜下进行,用于可视化导管和EP器件,相对于其他高度衰减的结构,例如胸椎脊柱和肋。然而,这些预测不包含有关软组织解剖学的信息,并且识别出具有预先可操作地获得的心脏多层计算机断层扫描(MSCT)体积的常规荧光检查的融合需要。本申请中的快速2D-3D集成将允许与MSCT中可见的心血管解剖结构相关的所有导管的实时可视化。我们介绍了一种快速融合的3D X射线透视与3D MSCT的方法,可以通过减少对术语帧内造影剂的需要来促进EP映射和介入程序,以使心脏室和专业系统追踪心血管解剖内的导管。我们使用硬件加速的射线铸件来计算来自MSCT卷的数字重建射线照片(DRR),并迭代地优化体积数据的刚体姿势,以最大化MSCT衍生的DRR和术语型X射线之间的相似性投影数据。

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