人工智能
计算机科学
计算机视觉
经皮冠状动脉介入治疗
变形(气象学)
计算机断层血管造影
张量(固有定义)
冠状动脉疾病
深度学习
医学
作者
Wei Wu,Jingyang Zhang,Wenjia Peng,Hongzhi Xie,Shuyang Zhang,Lixu Gu
标识
DOI:10.1109/tmi.2022.3168786
摘要
Percutaneous coronary intervention is widely applied for the treatment of coronary artery disease under the guidance of X-ray coronary angiography (XCA) image. However, the projective nature of XCA causes the loss of 3D structural information, which hinders the intervention. This issue can be addressed by the deformable 3D/2D coronary artery registration technique, which fuses the pre-operative computed tomography angiography volume with the intra-operative XCA image. In this study, we propose a deep learning-based neural network for this task. The registration is conducted in a segment-by-segment manner. For each vessel segment pair, the centerlines that preserve topological information are decomposed into an origin tensor and a spherical coordinate shape tensor as network input through independent branches. Features of different modalities are fused and processed for predicting angular deflections, which is a special type of deformation field implying motion and length preservation constraints for vessel segments. The proposed method achieves an average error of 1.13 mm on the clinical dataset, which shows the potential to be applied in clinical practice.
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