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Adaptive thresholding incorporating temporal and spatial information with eigen-based clutter filter for color Doppler processing in ultrasonic systems

机译:具有用于超声波系统中的彩色多普勒处理的基于eIGEN的杂波滤波器的时间和空间信息的自适应阈值。

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Color Doppler imaging is mainly used to observe the blood flow in the region of interest. The desired blood signal will be greatly affected by the clutter noises, and conventional linear clutter filter may not eliminate clutter noises effectively without the assistance of the thresholding mechanism. In this work, we proposed an adaptive thresholding mechanism with probability-based clutter power ratio (PCPR) incorporating temporal and spatial information based on the maximum-likelihood (ML) and maximum a posteriori (MAP) criteria. The proposed mechanism can verify the blood and tissue regions more accurately and eliminate all the undesired clutter noises in the verified tissue regions. The proposed mechanism has 5–10 dB better performance than the referenced algorithms due to its nonlinear property.
机译:彩色多普勒成像主要用于观察感兴趣区域中的血流。所需的血液信号将受到杂波噪声的大大影响,并且传统的线性杂波滤光器可以在没有阈值机构的帮助下有效地消除杂波噪声。在这项工作中,我们提出了一种具有基于概率的杂波功率比(PCPR)的自适应阈值机制(PCPR),其基于最大似然(ml)和最大后验(MAP)标准。所提出的机制可以更准确地验证血液和组织区域,并消除验证的组织区域中的所有不期望的杂波噪声。所提出的机制具有5-10dB,比其非线性属性引用的算法比引用的算法更好。

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