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吞咽、动脉搏动和呼吸会在颈动脉磁共振成像中产生运动伪影。

Swallowing, arterial pulsation, and breathing induce motion artifacts in carotid artery MRI.

作者信息

Boussel Loic, Herigault Gwenael, de la Vega Alejandro, Nonent Michel, Douek Philippe Charles, Serfaty Jean Michel

机构信息

Department of Radiology, University Hospital Center, Lyon, France.

出版信息

J Magn Reson Imaging. 2006 Mar;23(3):413-5. doi: 10.1002/jmri.20525.

Abstract

PURPOSE

To identify and quantify the potential sources of motion in carotid artery imaging.

MATERIALS AND METHODS

Two healthy volunteers and 12 patients (20-75 years old) with atherosclerotic disease were scanned on a Philips Intera 1.5T system. A single-shot balanced-fast field echo (bFFE) sequence was used to acquire real-time axial views of the carotid artery wall (three images per second). A three-step acquisition protocol was performed to analyze the three types of motion (arterial pulsation, breathing, and swallowing) separately. The isocenter carotid artery motion amplitude in either the x or y direction was measured. Radial variation in the carotid lumen between the systolic and diastolic phases was analyzed. Motion frequency was reported for each patient.

RESULTS

Significant motion related to arterial pulsation (amplitude = 0.27-0.93 mm, mean = 0.6, SD = 0.19), breathing (amplitude = 0.5-3.6 mm, mean = 1.56, SD = 0.99)), and swallowing (amplitude = 1.4-9.2 mm, mean = 4.7, SD = 2.4) were visualized.

CONCLUSION

Pulsation, breathing, and swallowing are sources of significant motion in the carotid artery wall. Such motion should be considered in the future to improve carotid artery image quality.

摘要

目的

识别并量化颈动脉成像中潜在的运动来源。

材料与方法

对两名健康志愿者和12例(年龄20 - 75岁)患有动脉粥样硬化疾病的患者在飞利浦Intera 1.5T系统上进行扫描。使用单次激发平衡快速场回波(bFFE)序列获取颈动脉壁的实时轴向视图(每秒三幅图像)。执行三步采集方案以分别分析三种运动类型(动脉搏动、呼吸和吞咽)。测量等中心处颈动脉在x或y方向上的运动幅度。分析收缩期和舒张期之间颈动脉管腔的径向变化。报告每位患者的运动频率。

结果

观察到与动脉搏动(幅度 = 0.27 - 0.93毫米,平均值 = 0.6,标准差 = 0.19)、呼吸(幅度 = 0.5 - 3.6毫米,平均值 = 1.56,标准差 = 0.99)以及吞咽(幅度 = 1.4 - 9.2毫米,平均值 = 4.7,标准差 = 2.4)相关的显著运动。

结论

搏动、呼吸和吞咽是颈动脉壁显著运动的来源。未来在改善颈动脉图像质量时应考虑此类运动。

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