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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effects of reverberations and clutter filtering in pulsed Doppler using sparse sequences
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Effects of reverberations and clutter filtering in pulsed Doppler using sparse sequences

机译:稀疏序列对脉冲多普勒混响和杂波滤波的影响

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Duplex ultrasound is a modality in which an ultrasound system is used for simultaneous acquisition of both B-mode images and velocity (Doppler) data. Conventional duplex sequences interleave packets of B-mode and Doppler transmissions, producing undesirable gaps during B-mode interruptions. In recent years, several techniques have been proposed for avoiding such gaps by using sparse sequences, in which velocity spectra are generated from nonuniformly sampled Doppler data containing frequent B-mode interruptions. In this work, two negative effects are discussed that may influence velocity estimation when using nonuniformly sampled sequences. First, it is shown that long reverberation times lead to discontinuities in the signal from stationary clutter after each B-mode interruption. Second, using frequency analysis, it is shown that clutter filtering of nonuniformly sampled data may introduce artifacts in the velocity spectrum, and also lead to significant bias in mean velocity estimates. Methods are presented for quantification of these effects, and utilized to analyze three types of sparse duplex sequences for blood velocity estimation. In particular, it is argued that the use of such sequences in cardiac applications is not recommended because of long reverberation time. Additionally, it is found that the use of regression filters to filter nonuniformly sampled data may produce significant artifacts in pulsed wave Doppler spectra, but is less significant for color Doppler imaging applications. In vitro and in vivo examples are included showing the presence and magnitude of these problems in clinically relevant applications.
机译:双工超声是一种模式,其中超声系统用于同时采集B模式图像和速度(多普勒)数据。常规的双工序列交错B模式和多普勒传输的数据包,在B模式中断期间产生不希望的间隙。近年来,已经提出了几种通过使用稀疏序列来避免这种间隙的技术,其中从包含频繁B模式中断的非均匀采样多普勒数据中生成速度谱。在这项工作中,讨论了两个负面影响,这些负面影响在使用非均匀采样序列时可能会影响速度估计。首先,证明了较长的混响时间会导致在每次B模式中断后来自固定杂波的信号不连续。其次,使用频率分析表明,对不均匀采样的数据进行杂波滤波可能会在速度谱中引入伪影,并且还会导致平均速度估计值出现明显偏差。提出了量化这些影响的方法,并用于分析三种类型的稀疏双链体序列以进行血流速度估计。特别是,由于混响时间长,因此不建议在心脏应用中使用此类序列。此外,已发现使用回归过滤器过滤不均匀采样的数据可能会在脉冲多普勒频谱中产生明显的伪像,但对于彩色多普勒成像应用而言意义不大。包括体外和体内的实例,其显示了在临床相关应用中这些问题的存在和严重性。

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