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Estimation of diastolic intraventricular pressure gradients from color Doppler M-mode spatiotemporal velocities: analytical Euler equation solution

机译:从彩色多普勒M型时空速度估算舒张期心室压力梯度:解析欧拉方程解

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The importance of left ventricular diastolic function continues to drive experimental efforts to understand underlying processes involved in filling dynamics and challenge researchers to develop improved methods to evaluate cardiac function. Diastolic intraventricular pressure gradients can be estimated from spatiotemporal velocity distributions obtained from color Doppler M-mode echocardiography. The Euler equation describes incremental pressure changes as a function of time-varying velocities along a streamline. Integration of these local pressure gradients allows comparison of pressure at different levels within the ventricle. The authors have demonstrated that the pressure drop at the apex was more and occurred earlier when compared to mid-ventricular and basal pressures. The quantification of these intraventricular gradients may assist in the evaluation of diastolic function.
机译:左心室舒张功能的重要性继续推动实验努力,以了解参与充盈动力学的潜在过程,并挑战研究人员开发改进的方法来评估心脏功能。舒张期脑室内压力梯度可以从彩色多普勒M型超声心动图获得的时空速度分布进行估算。欧拉方程描述了增量压力变化是沿流线的随时间变化的速度的函数。这些局部压力梯度的积分允许比较心室内不同水平的压力。作者已经证明,与心室中部和基础压力相比,顶点处的压力下降更大,发生的时间更早。这些脑室内梯度的量化可能有助于评估舒张功能。

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