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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Ultrafast compound doppler imaging: providing full blood flow characterization
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Ultrafast compound doppler imaging: providing full blood flow characterization

机译:超快复合多普勒成像:提供全血流特征

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摘要

Doppler-based flow analysis methods require acquisition of ultrasound data at high spatio-temporal sampling rates. These rates represent a major technical challenge for ultrasound systems because a compromise between spatial and temporal resolution must be made in conventional approaches. Consequently, ultrasound scanners can either provide full quantitative Doppler information on a limited sample volume (spectral Doppler), or averaged Doppler velocity and/or power estimation on a large region of interest (Doppler flow imaging). In this work, we investigate a different strategy for acquiring Doppler information that can overcome the limitations of the existing Doppler modes by significantly reducing the required acquisition time. This technique is called ultrafast compound Doppler imaging and is based on the following concept: instead of successively insonifying the medium with focused beams, several tilted plane waves are sent into the medium and the backscattered signals are coherently summed to produce highresolution ultrasound images. We demonstrate that this strategy allows reduction of the acquisition time by a factor of up to of 16 while keeping the same Doppler performance. Depending on the application, different directions to increase performance of Doppler analysis are proposed and the improvement is quantified: the ultrafast compound Doppler method allows faster acquisition frame rates for high-velocity flow imaging, or very high sensitivity for low-flow applications. Full quantitative Doppler flow analysis can be performed on a large region of interest, leading to much more information and improved functionality for the physician. By leveraging the recent emergence of ultrafast parallel beamforming systems, this paper demonstrates that breakthrough performances in flow analysis can be reached using this concept of ultrafast compound Doppler.
机译:基于多普勒的流量分析方法要求以高时空采样率采集超声数据。这些速率代表了超声系统的一项主要技术挑战,因为必须在常规方法中在空间和时间分辨率之间做出折衷。因此,超声扫描仪可以在有限的样本量(频谱多普勒)上提供完整的定量多普勒信息,或者在感兴趣的大区域上提供平均的多普勒速度和/或功率估计(多普勒血流成像)。在这项工作中,我们研究了一种获取多普勒信息的不同策略,该策略可以通过显着减少所需的采集时间来克服现有多普勒模式的局限性。这项技术称为超快复合多普勒成像,它基于以下概念:不是先用聚焦束对介质进行连续声处理,而是将几个倾斜的平面波发送到介质中,并将背向散射的信号相干相加,以生成高分辨率的超声图像。我们证明了这种策略可以将采集时间减少多达16倍,同时保持相同的多普勒性能。根据不同的应用,提出了提高多普勒分析性能的不同方向,并对改进进行了量化:超高速复合多普勒方法可以为高速流成像提供更快的采集帧速率,或者为低流应用提供很高的灵敏度。可以在较大的目标区域上进行全定量多普勒血流分析,从而为医生带来更多信息并改善功能。通过利用超快并行波束成形系统的最新出现,本文证明了使用超快复合多普勒概念可以在流量分析中实现突破性的性能。

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