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首页> 外文期刊>Ultrasound in Medicine and Biology >Spatio-temporal mapping of intracardiac pressure gradients. A solution to Euler's equation from digital postprocessing of color Doppler M-mode echocardiograms.
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Spatio-temporal mapping of intracardiac pressure gradients. A solution to Euler's equation from digital postprocessing of color Doppler M-mode echocardiograms.

机译:心内压力梯度的时空映射。彩色多普勒M型超声心动图的数字后处理,可以解决欧拉方程。

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Doppler assessment of intracardiac pressure gradients using the simplified Bernoulli equation is inaccurate in the absence of a restricted orifice. The purpose of this study is to develop a new general method to map instantaneous pressure gradients inside the heart using Doppler echocardiography. Color Doppler M-mode recordings are digitally postprocessed with a software algorithm that decodes flow velocity and fits a bivariate spatio-temporal tensor-product smoothing spline. Temporal and spatial accelerations are then calculated by analytical derivation of the fitted velocity data, allowing solution of both inertial and convective terms of Euler's equation. A database of 39 transmitral inflow and transaortic outflow color Doppler M-mode recordings from 20 patients with a number of cardiac conditions was analysed, along with matched pulsed-wave spectral recordings. A close agreement was observed between the spectral and postprocessed color Doppler velocity values (error = 0.8 +/- 11.7 cm/s), validating the data decoding and fitting process. Spatio-temporal pressure-gradient maps were obtained from all studies, allowing visualisation of instantaneous pressure gradients from the atrium to the apex during left ventricular filling, and from the apex to the outflow tract during ejection. Instantaneous pressure differences between localised intracardiac sample points closely matched previously published catheterization findings, both in magnitude and waveform shape. Our method shows that intracardiac instantaneous pressure gradients can be analysed noninvasively using color Doppler M-mode echocardiography combined with image postprocessing methods.
机译:在没有节流孔的情况下,使用简化的伯努利方程对心脏内压力梯度进行多普勒评估是不准确的。这项研究的目的是开发一种使用多普勒超声心动图绘制心脏内部瞬时压力梯度的新通用方法。彩色多普勒M模式记录通过软件算法进行数字后处理,该软件算法可解码流速并拟合双变量时空张量积平滑样条。然后通过对拟合速度数据进行解析推导来计算时间和空间加速度,从而可以求解欧拉方程的惯性和对流项。分析了一个数据库,该数据库包含来自20位患有多种心脏疾病的患者的39个经颅内流和经主动脉外流彩色多普勒M型记录,以及匹配的脉冲波频谱记录。在光谱和后处理的彩色多普勒速度值(误差= 0.8 +/- 11.7 cm / s)之间观察到密切的一致性,验证了数据解码和拟合过程。时空压力梯度图是从所有研究中获得的,可以在左心室充盈期间可视化从心房到心尖的瞬时压力梯度,在射血过程中从心尖到流出道的瞬时压力梯度可视化。局部心内采样点之间的瞬时压力差在大小和波形形状上都与先前发表的导管插入结​​果非常匹配。我们的方法表明,可以使用彩色多普勒M型超声心动图与图像后处理方法相结合地无创地分析心内瞬时压力梯度。

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