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A digital multigate doppler method for high frequency ultrasound

机译:高频超声的数字多门多普勒方法

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摘要

Noninvasive visualization of blood flow with high frequency Doppler ultrasound has been extensively used to assess the morphology and hemodynamics of the microcirculation. A completely digital implementation of multigate pulsed-wave (PW) Doppler method was proposed in this paper for high frequency ultrasound applications. Analog mixer was eliminated by a digital demodulator and the same data acquisition path was shared with traditional B-mode imaging which made the design compact and flexible. Hilbert transform based quadrature demodulation scheme was employed to achieve the multigate Doppler acquisition. A programmable high frequency ultrasound platform was also proposed to facilitate the multigate flow visualization. Experimental results showed good performance of the proposed method. Parabolic velocity gradient inside the vessel and velocity profile with different time slots were acquired to demonstrate the functionality of the multigate Doppler. Slow wall motion was also recorded by the proposed method.
机译:高频多普勒超声对血流的非侵入性可视化已广泛用于评估微循环的形态和血液动力学。本文针对高频超声应用提出了一种完全数字化的多门脉冲波(PW)多普勒方法。数字混频器消除了模拟混频器,传统的B模式成像共享了相同的数据采集路径,从而使设计紧凑而灵活。采用基于希尔伯特变换的正交解调方案来实现多门多普勒采集。还提出了一个可编程的高频超声平台来促进多门流动的可视化。实验结果表明该方法具有良好的性能。采集了容器内抛物线速度梯度和具有不同时隙的速度曲线,以证明多闸多普勒的功能。所提出的方法还记录了壁慢运动。

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