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Significance of color Doppler M-mode scanline orientation in the non-invasive assessment of intraventricular pressure gradients

机译:彩色多普勒M模式扫描线取向在腔内压力梯度非侵入性评估中的意义

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The one dimension Euler equation has been applied to estimate diastolic transvalvular and intraventricular pressure differences from color Doppler M-mode echocardiographic spatiotemporal velocity distributions in an animal model. An assumption mode in applying this fluid dynamics principle is that the ultrasound scanline closely approximates an inflow streamline. The purpose of this study was to examine the importance of scanline alignment for pressure gradient estimation using computational models derived from cross-sectional echocardiographic geometry. Pressure gradients computed from M-mode scanlines velocity distributions using the Euler equation were compared with the results of the simulations and demonstrate a strong correlation with the simulated pressure gradients within the central 60% of the mitral valve (r=0.95, MSE=0.2 mmHg). Clinical investigations utilizing this noninvasive approach should not be effected by the precise alignment of the scanline with an inflow streamline.
机译:一维欧拉方程已经应用于估计与动物模型中的彩色多普勒M模式超声心动图的舒张性分布和脑室内压力差异。应用这种流体动力学原理的假设模式是超声波扫描线与流入流线相近。本研究的目的是使用从横截面超声心动图几何衍生的计算模型来检查扫描线对准对压力梯度估计的重要性。将使用欧拉方程的M模式扫描线速度分布计算的压力梯度与模拟结果进行比较,并与二尖瓣中央60%的模拟压力梯度进行了强烈的相关性(R = 0.95,MSE = 0.2mmHg )。利用这种非侵入性方法的临床调查不应通过扫描线与流入流线的精确对准来实现。

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