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Noninvasive assessment of diastolic intraventricular pressure gradients using color Doppler M-mode echocardiography

机译:使用彩色多普勒M模式超声心动图的舒张性腔内压力梯度的非侵入性评估

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Diastolic intraventricular gradients, while previously observed are now hypothesized to play a critical role in diastolic filling and function. However the clinical ability to monitor intraventricular pressure gradients is not normally possible. Doppler echocardiographic M-mode analysis may provide a noninvasive estimate of this important information. The Euler equation, which describes the pressure-velocity relationship along an inflow streamline, is used to compute the diastolic pressure gradient within the ventricle. In a novel experimental setup, the invasive pressures at multiple locations within the ventricular chamber are acquired simultaneously with noninvasive color Doppler M-mode images providing spatiotemporal velocity distributions during diastolic filling. Techniques have been developed to calculate pressure gradients using digitally processed spatiotemporal velocity distributions obtained from the color Doppler M-mode image. These results have been compared with the direct invasive pressure measurements.
机译:舒张性脑内梯度,虽然先前观察到现在假设在舒张填充和功能中发挥着关键作用。然而,通常不可能监测腔内压力梯度的临床能力。多普勒超声心动图M模式分析可以提供对这一重要信息的非侵入性估计。描述沿流入流线的压力速度关系的欧拉方程用于计算心室内的舒张压梯度。在一种新型实验装置中,与在舒张填充期间的非侵入性彩色多普勒M模式图像同时获取室内室内的多个位置处的侵入性压力。舒张填充期间提供时空速度分布。已经开发了使用从彩色多普勒M模式图像获得的数字处理的时空速度分布来计算压力梯度的技术。这些结果与直接侵入性压力测量进行了比较。

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