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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Blood Flow Imaging in the Neonatal Brain Using Angular Coherence Power Doppler
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Blood Flow Imaging in the Neonatal Brain Using Angular Coherence Power Doppler

机译:使用角度连贯动力多普勒在新生儿脑中成像血流成像

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摘要

Using ultrasound to image small vessels in the neonatal brain can be difficult in the presence of strong clutter from the surrounding tissue and with a neonate motion during the scan. We propose a coherence-based beamforming method, namely the short-lag angular coherence (SLAC) beamforming that suppresses incoherent noise and motion artifacts in Ultrafast data, and we demonstrate its applicability to improve detection of blood flow in the neonatal brain. Instead of estimating spatial coherence across the receive elements, SLAC utilizes the principle of acoustic reciprocity to estimate angular coherence from the beamsummed signals from different plane-wave transmits, which makes it computationally efficient and amenable to advanced beamforming techniques, such as f-k migration. The SLAC images of a simulated speckle phantom show similar edge resolution and texture size as the matching B-mode images, and reduced random noise in the background. We apply SLAC power Doppler (PD) to free-hand imaging of neonatal brain vasculature with long Doppler ensembles and show that: 1) it improves visualization of small vessels in the cortex compared to conventional PD and 2) it can be used for tracking of blood flow in the brain over time, meaning it could potentially improve the quality of free-hand functional ultrasound.
机译:在扫描期间,在新生儿大脑的情况下,在新生大脑的情况下,在新生儿大脑中使用超声波的小血管可能困难。我们提出了一种基于一致的波束形成方法,即抑制超快数据中的非扑振噪声和运动伪像的短滞相干(SLAC)波束形成,并且我们证明了改善新生大脑中血流检测的适用性。代替估计跨接收元件的空间相干性,SLAC利用声学互动的原理来利用来自来自不同平面波的横梁信号的角度相干性,这使得它可以计算上高效并且可以适用于高级波束成形技术,例如F-K迁移。模拟斑点幻像的SLAC图像显示出类似的边缘分辨率和纹理大小作为匹配的B模式图像,并减少了背景中的随机噪声。我们将SLAC电源多普勒(PD)应用于新生儿脑脉管系统的释放成像,具有长多普勒合奏,表明:1)与传统PD和2)相比,它可以改善皮质中的小血管的可视化,2)它可用于跟踪随着时间的推移,大脑中的血液流动,这意味着它可能会提高释放功能超声的质量。

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