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首页> 外文期刊>Investigative radiology >Coronary artery motion during the cardiac cycle and optimal ECG triggering for coronary artery imaging.
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Coronary artery motion during the cardiac cycle and optimal ECG triggering for coronary artery imaging.

机译:心动周期中的冠状动脉运动和用于冠状动脉成像的最佳ECG触发。

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摘要

RATIONALE AND OBJECTIVES: Our purpose was to investigate the motion characteristics of the coronary arteries and determine optimal electrocardiographic (ECG) trigger time during the cardiac cycle to minimize motion artifacts. METHODS: Contrast-enhanced multislice movie studies of electron beam tomography (EBT) images were performed on 70 subjects. The EBT datasets, which covered an entire cardiac cycle at 58-ms intervals, were acquired for a short-axis view of the heart with ECG triggering. The pixel values along x and y axes were measured at multiple intervals during the cardiac cycle to establish the motion distance and velocity of three major coronary arteries. RESULTS: Coronary artery motion varied greatly throughout the cardiac cycle in three major coronary arteries and increased with the patient's baseline heart rate. The greatest and lowest velocities of coronary arterial movement during the cardiac cycle were determined. Based on the lowest velocity of right coronary artery movement during the cardiac cycle, the optimal ECG trigger times were located at approximately 35% (31.4%-37.6%) or 70% (68.7%-71.4%) of the R-R interval in patients whose resting heart rate was < or =70 beats per minute (bpm); at 50% (47.2%-61.1%) of the R-R interval in the 71- to 100-bpm group; and at 55% (52.8%-59.1%) of the R-R interval in the >100-bpm group. Our data demonstrated that the motion characteristics of the left circumflex artery were quite similar to those of the right coronary artery and that the left anterior descending coronary artery had no significant differences in motion throughout the cardiac cycle. A minimum scan speed of 35.4 to 75.5 ms per slice is needed to completely diminish cardiac motion artifacts (in-plane coronary artery motion with <1-mm displacement). CONCLUSIONS: For coronary artery screening, the optimal ECG trigger time should be determined according to the patient's heart rate, thus greatly reducing motion and motion artifacts during 100-ms acquisitions.
机译:理由和目的:我们的目的是研究冠状动脉的运动特征,并确定在心动周期内的最佳心电图(ECG)触发时间,以最大程度地减少运动伪影。方法:对70名受试者进行了电子束断层扫描(EBT)图像的对比增强多层电影研究。 EBT数据集以58毫秒的间隔覆盖了整个心动周期,并通过ECG触发获取了心脏的短轴视图。在心动周期中以多个间隔测量沿x和y轴的像素值,以建立三个主要冠状动脉的运动距离和速度。结果:在整个心动周期中,三个主要冠状动脉的冠状动脉运动变化很大,并随患者的基线心率增加。确定了心动周期中冠状动脉运动的最大和最低速度。根据心动周期中右冠状动脉的最低移动速度,对于以下患者,最佳心电图触发时间位于RR间隔的大约35%(31.4%-37.6%)或70%(68.7%-71.4%)静息心率≤70次/分钟(bpm); 71至100 bpm组中R-R间隔的50%(47.2%-61.1%); > 100 bpm组中R-R间隔的55%(52.8%-59.1%)。我们的数据表明,左旋支动脉的运动特征与右冠状动脉的运动特征非常相似,并且左前降支冠状动脉在整个心动周期中的运动没有显着差异。要完全减少心脏运动伪影(位移小于1毫米的面内冠状动脉运动),每片至少需要35.4至75.5 ms的最小扫描速度。结论:对于冠状动脉筛查,最佳ECG触发时间应根据患者的心率确定,这样可以在100毫秒的采集过程中大大减少运动和运动伪影。

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