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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Adaptive clutter rejection filtering in ultrasonic strain-flow imaging
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Adaptive clutter rejection filtering in ultrasonic strain-flow imaging

机译:超声波应变流动成像中的自适应杂波抑制滤波

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This paper introduces strain-flow imaging as a potential new technique for investigating vascular dynamics and tumor biology. The deformation of tissues surrounding pulsatile vessels and the velocity of fluid in the vessel are estimated from the same data set. The success of the approach depends on the performance of a digital filter that must separate echo signal components caused by flow from tissue motion components that vary spatially and temporally. Eigenfilters, which are an important tool for naturally separating signal components adaptively throughout the image, perform very well for this task. The method is examined using two tissue-mimicking flow phantoms that provide stationary and moving clutter associated with pulsatile flow.
机译:本文介绍了应变流成像作为研究血管动态和肿瘤生物学的潜在新技术。从相同的数据集估计围绕脉动血管周围的组织和血管中的流体速度的变形。该方法的成功取决于数字滤波器的性能,该数字滤波器必须分开由从空间和时间变化的组织运动部件的流量​​引起的回波信号分量。 EigenFilters是一种重要的在整个图像中自然分离信号分量的重要工具,对此任务执行非常好。使用两个组织模仿流动模型检查该方法,该流动模型提供与脉动流动相关的静止和移动杂波。

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