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Novel method of measuring valvular regurgitation using three-dimensional nonlinear curve fitting of doppler signals within the flow convergence zone

机译:流收敛区域内多普勒信号的三维非线性曲线拟合测量瓣膜反流的新方法

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摘要

Mitral valve regurgitation (MR) is among the most prevalent and significant valve problems in the Western world. Echocardiography plays a significant role in the diagnosis of degenerative valve disease. However, a simple and accurate means of quantifying MR has eluded both the technical and clinical ultrasound communities. Perhaps the best clinically accepted method used today is the 2-D proximal isovelocity surface area (PISA) method. In this study, a new quantification method using 3-D color Doppler ultrasound, called the field optimization method (FOM), is described. For each 3-D color flow volume, this method iterates on a simple fluid dynamics model that, when processed by a model of ultrasound physics, attempts to agree with the observed velocities in a least-squares sense. The output of this model is an estimate of the regurgitant flow and the location of its associated orifice. To validate the new method, in vitro experiments were performed using a pulsatile flow loop and different geometric orifices. Measurements from the FOM and from 2-D PISA were compared with measurements made with a calibrated ultrasonic flow probe. Results show that the new method has a higher correlation to the truth data and has lower inter- and intra-observer variability than the 2-D PISA method.
机译:二尖瓣返流(MR)是西方世界中最普遍和最严重的瓣膜问题之一。超声心动图在变性瓣膜疾病的诊断中起着重要作用。但是,简单而准确的量化MR的方法已使技术和临床超声社区望而却步。也许当今使用的最好的临床可接受方法是2-D近端等速表面积(PISA)方法。在这项研究中,描述了一种新的使用3-D彩色多普勒超声的量化方法,称为场优化方法(FOM)。对于每个3D彩色流量,此方法都会在简单的流体动力学模型上进行迭代,当通过超声物理模型进行处理时,该模型试图以最小二乘的方式与观察到的速度一致。该模型的输出是对反流流量及其相关孔口位置的估计。为了验证该新方法,使用脉动流环和不同的几何孔口进行了体外实验。将FOM和2-D PISA的测量值与校准的超声波流量探头的测量值进行比较。结果表明,与2-D PISA方法相比,该新方法与真实数据的相关性更高,并且观察者之间和观察者内部的变异性更低。

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