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Spatiotemporal Fourier filtration of acoustic quantification endocardial borders using Cartesian vs. Polar coordinate system

机译:使用笛卡尔与极性坐标系的声量化的时空傅里叶傅里叶过滤

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The analysis of endocardial borders by Acoustic Quantification (AQ) of 2D echocardiographic images is limited by the presence of random high frequency noise. Using 1D filtration in the Fourier domain we have shown previously that smoothing of AQ images improves signal-to-noise ratio. In this paper we have extended the study by applying 2D Fourier filtration (spatial and temporal) to the AQ borders, and study which of the two sampling methods, Polar or Cartesian sampling, yields a more accurate representation. Various image processing techniques including region labeling, thresholding, edge detection, and area fill algorithms along with 2D-DFT and Hanning filters were used to process the images. Using the original AQ as the gold standard, our results favor Cartesian sampling over Polar sampling.
机译:通过2D超声心动图图像的声学量化(AQ)对心内膜的分析是受随机高频噪声的存在的限制。在傅立叶域中使用1D过滤我们之前显示了AQ图像的平滑,提高了信噪比。在本文中,我们通过将2D傅里叶过滤(空间和时间)应用于AQ边界,研究了两种采样方法,极性或笛卡尔采样中的哪一个产生了更准确的表示。包括区域标记,阈值,边缘检测和区域填充算法以及2D-DFT和HANNINGE过滤器的各种图像处理技术用于处理图像。使用原来的AQ作为黄金标准,我们的成果有利于笛卡尔在极地采样上采样。

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