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Evaluation of Vortex Flow in Left Ventricle by Echo-dynamography and Phase Contrast Magnetic Resonance Angiography

机译:回声动力学和相位对比磁共振血管造影评估左心室涡流流动的评价

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Echo-dynamography (EDG) is a method for visualizing left ventricular (LV) blood flow based on cardiac Doppler measurement in which blood flow component perpendicular to the ultrasonic beam is deduced by applying fluid dynamics theories to two-dimensional (2D) distribution of blood flow component along the ultrasonic beam. EDG has been validated by numerical simulation and particle image velocimetry of model circulation. However, these validations were too simple to reproduce unstable and asymmetrical flow in a beating heart. In the present study, EDG is compared with three-directional (3D) blood flow distribution on the same plane obtained with phase contrast magnetic resonance angiography (PCMRA) for clinical validation. Moreover, the location and vorticity of the vortex flow in LV are measured quantitatively and the relation to echocardiographic parameters of systolic and diastolic functions is discussed. 3D components of blood flow on a plane were obtained with triple scans of the same plane with ECG trigger and breath holding; 1) phase encode (x-axis), 2) read out (y-axis) and 3) slice selection (z-axis). After the acquisition of MRA dataset, color Doppler dataset of the same plane was acquired and 2D velocity distribution was obtained with EDG in MATLAB programs. EDG and PCMRA showed similar velocity vector distribution and formation of LV vortex flow. The vortex at mid diastolic phase was strongly affected by early diastolic filling while the vortex at isometric contraction was affected by atrial filling. EDG gained a new insight on systolic-diastolic coupling from the view point of LV blood flow such as LV vortex formation.
机译:回声动力摄取(EDG)是基于心脏多普勒测量来可视化左心室(LV)血流的方法,其中通过将流体动力学理论应用于二维(2D)血液的二维(2D)分布来推导出垂直于超声波束的血流分量流量分量沿超声波束。通过模型循环的数值模拟和粒子图像测速方法验证了EDG。然而,这些验证太简单,无法在殴打心中复制不稳定和不对称的流动。在本研究中,将EDG与在用相对磁共振血管造影(PCMRA)获得的同一平面上的三向(3D)血流分布进行比较,用于临床验证。此外,讨论了LV中涡流流动的位置和涡流,并讨论了与收缩功能和舒张功能的超声心动图参数的关系。使用与ECG触发和呼吸保持同一平面的三重扫描获得平面上的血流的3D组分; 1)相位编码(x轴),2)读出(y轴)和3)切片选择(z轴)。在获取MRA数据集后,获取同一平面的颜色多普勒数据集,并在MATLAB程序中使用EDG获得2D速度分布。 EDG和PCMRA显示出类似的速度矢量分布和LV涡流流动的形成。中舒张相的涡流受早期舒张填充的强烈影响,而等轴承收缩的涡流受到心房填充的影响。 EDG从LV血流视点(如LV Vortex)形成)中获得了关于收缩舒张耦合的新洞察。

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