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Automatic gating window positioning for 3D rotational coronary angiography (3DRCA)

机译:自动门窗定位,用于3D旋转冠状动脉造影(3DRCA)

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Three-dimensional rotational coronary angiography (3DRCA) is a new technique for imaging coronary vessels in the human body. Due to the residual cardiac motion, projections being in the same cardiac motion state are extracted from the acquired series using electrocardiogram (ECG) information. A gating window is determined at a pre-defined trigger delay relative to the R-peaks with a constant width. In order to achieve the best possible image quality, cardiac phases must be found during which the heart is nearly stationary. However, the (ECG) signal represents the electrical activity of the heart and corresponds to the heart movement only approximately. Currently, the optimum gating window positioning is based on values derived by experience. It is difficult to determine where the heart is most stable in the cycle due to a high patient variability. Furthermore, the optimal gating window position is depending on the coronary vessel segment. The purpose of this work is to introduce a simple and efficient image based technique, which is able to determine the optimal gating window position fully automatically. The measurements in this paper are based on the analysis of two-dimensional X-ray projection data of the coronary arteries in an animal (pig) model.
机译:三维旋转冠状动脉造影(3DRCA)是一种用于对人体冠状动脉成像的新技术。由于残留的心脏运动,因此使用心电图(ECG)信息从获取的序列中提取处于相同心脏运动状态的投影。在相对于具有恒定宽度的R峰的预定义触发延迟下确定门控窗口。为了获得最佳的图像质量,必须找到心脏几乎处于静止状态的心脏相位。但是,(ECG)信号代表心脏的电活动,仅大致对应于心脏运动。当前,最佳选通窗口定位是基于经验得出的值。由于患者的高变异性,很难确定心脏在周期中最稳定的位置。此外,最佳门控窗口位置取决于冠状动脉血管段。这项工作的目的是介绍一种简单有效的基于图像的技术,该技术能够完全自动确定最佳选通窗口位置。本文中的测量基于对动物(猪)模型中冠状动脉的二维X射线投影数据的分析。

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