DocumentCode :
39077
Title :
Multi-Part Modeling and Segmentation of Left Atrium in C-Arm CT for Image-Guided Ablation of Atrial Fibrillation
Author :
Yefeng Zheng ; Dong Yang ; John, Michael ; Comaniciu, Dorin
Author_Institution :
Imaging & Comput. Vision Technol. Field, Siemens Corp. Technol., Princeton, NJ, USA
Volume :
33
Issue :
2
fYear :
2014
fDate :
Feb. 2014
Firstpage :
318
Lastpage :
331
Abstract :
As a minimally invasive surgery to treat atrial fibrillation (AF), catheter based ablation uses high radio-frequency energy to eliminate potential sources of abnormal electrical events, especially around the ostia of pulmonary veins (PV). Fusing a patient-specific left atrium (LA) model (including LA chamber, appendage, and PVs) with electro-anatomical maps or overlaying the model onto 2-D real-time fluoroscopic images provides valuable visual guidance during the intervention. In this work, we present a fully automatic LA segmentation system on nongated C-arm computed tomography (C-arm CT) data, where thin boundaries between the LA and surrounding tissues are often blurred due to the cardiac motion artifacts. To avoid segmentation leakage, the shape prior should be exploited to guide the segmentation. A single holistic shape model is often not accurate enough to represent the whole LA shape population under anatomical variations, e.g., the left common PVs vs. separate left PVs. Instead, a part based LA model is proposed, which includes the chamber, appendage, four major PVs, and right middle PVs. Each part is a much simpler anatomical structure compared to the holistic one and can be segmented using a model-based approach (except the right middle PVs). After segmenting the LA parts, the gaps and overlaps among the parts are resolved and segmentation of the ostia region is further refined. As a common anatomical variation, some patients may contain extra right middle PVs, which are segmented using a graph cuts algorithm under the constraints from the already extracted major right PVs. Our approach is computationally efficient, taking about 2.6 s to process a volume with 256 × 256 × 245 voxels. Experiments on 687 C-arm CT datasets demonstrate its robustness and state-of-the-art segmentation accuracy.
Keywords :
blood vessels; cardiology; catheters; computerised tomography; diagnostic radiography; diseases; image motion analysis; image restoration; image segmentation; medical image processing; surgery; 2D real-time fluoroscopic images; abnormal electrical events; anatomical variations; appendage; atrial fibrillation treatment; cardiac motion artifacts; catheter based ablation; electro-anatomical maps; fully automatic LA segmentation system; high radio-frequency energy; image blurring; image-guided ablation; left atrium chamber; minimally invasive surgery; model-based approach; multipart modeling; multipart segmentation; nongated C-arm computed tomography; ostia region; patient-specific left atrium model; pulmonary veins; single holistic shape model; state-of-the-art segmentation accuracy; surrounding tissues; valuable visual guidance; Computational modeling; Computed tomography; Image segmentation; Magnetic resonance imaging; Robustness; Shape; Veins; Atrial fibrillation ablation; C-arm CT; left atrial appendage segmentation; left atrium modeling and segmentation; pulmonary vein segmentation;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2013.2284382
Filename :
6620955
Link To Document :
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