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Impact of temporal resolution on flow quantification by real-time 3D color Doppler echocardiography: numerical modeling and animal validation study

机译:时间分辨率对实时3D彩色多普勒超声心动图血流定量的影响:数值建模和动物验证研究

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Real-time, 3D color Doppler echocardiography (RT3D) is capable of quantifying flow at the LV outflow tract (LVOT). However, previous works have found significant underestimation for flow rate estimation due to finite scanning time (ST) of the color Doppler. The authors have, therefore, developed a mathematical model to correct the impact of ST on flow quantification and validated it by an animal study. Scanning time to cover the entire cross-sectional image of the LVOT was calculated as 60 ms, and the underestimation due to temporal averaging effect was predicted as 18/spl plusmn/7%. In the animal experiment, peak flow rates were obtained by spatially integrating the velocity data front the cross-sectional color images of the LVOT. By applying a correction factor, there was an excellent agreement between reference flow rate by an electromagnetic flow meter and RT3D (A/spl uml/=-5.6 ml/s, r=0.93), which was significantly better than without correction (p>0.001). Real-time, color 3D echocardiography was capable of quantifying flow accurately by applying the mathematical correction.
机译:实时3D彩色多普勒超声心动图(RT3D)能够量化左室流出道(LVOT)处的血流。然而,由于彩色多普勒的有限扫描时间(ST),先前的工作发现流速估计存在明显的低估。因此,作者开发了一种数学模型来纠正ST对流量定量的影响,并通过一项动物研究对其进行了验证。覆盖整个LVOT横截面图像的扫描时间计算为60 ms,并且由于时间平均效应而导致的低估被预测为18 / spl plusmn / 7%。在动物实验中,通过对LVOT横截面彩色图像前面的速度数据进行空间积分来获得峰值流速。通过应用校正因子,电磁流量计的参考流量与RT3D之间具有极好的一致性(A / spl uml / =-5.6 ml / s,r = 0.93),这比不进行校正的情况要好得多(p> 0.001)。实时彩色3D超声心动图能够通过应用数学校正来准确量化流量。

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