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3D coronary reconstruction from calibrated motion-compensated 2D projections based on semi-automated feature point detection

机译:基于半自动特征点检测从校准的运动补偿2D投影进行3D冠状动脉重建

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3D rotational coronary angiography (3DRCA) is one of the application areas of 3D rotational X-Ray imaging. In this application a sequence of projection images is acquired when the C-arrn is rotated around the patient. Since the heart is a moving object, only projections can be used which correspond to the same phase of the cardiac cycle. This significantly limits the number of projections available for reconstruction causing streaking artefacts in the reconstructed image due to angular undersanipling. The involvement of additional projections in the reconstruction procedure from different viewing angles would increase the quality of the volume data. Each successive acquired projection is slightly different compared with the previous one due to two reasons: First, there is a motion to the deformation of the heart, second there is an induced deformation owing to the change in the projection angle. The purpose of this work is to determine the motion owing to the heart deformation, so as to compensate for this motion in projection images in a different heart phase. Hereto we propose to use concepts from coronary modeling in combination of conventional reconstruction procedures. The proposed method facilitates the use of additional projections in the reconstruction. Motion-compensated reconstructed volume data are presented for coronary arteries in an animal (pig) model.
机译:3D旋转冠状动脉造影(3DRCA)是3D旋转X射线成像的应用领域之一。在此应用中,当C型臂围绕患者旋转时,会获取一系列投影图像。由于心脏是运动的物体,因此只能使用对应于心动周期同一相位的投影。这显着地限制了可用于重建的投影的数量,由于角度不足,导致在重建的图像中出现条纹伪影。从不同的角度在重建过程中涉及其他投影将提高体数据的质量。由于以下两个原因,每个相继获取的投影都与前一个相比略有不同:首先,心脏变形会产生运动,其次,由于投影角度的变化会引起感应的变形。这项工作的目的是确定由于心脏变形而引起的运动,以便补偿处于不同心脏相位的投影图像中的这种运动。迄今为止,我们建议结合常规重建程序使用冠状动脉建模的概念。所提出的方法有助于在重建中使用额外的投影。提供了运动补偿的重建体积数据,用于动物(猪)模型中的冠状动脉。

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