Thin film phantom for blood flow simulation

S. McAleavey, Z. Hah, K. Parker
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引用次数: 1

Abstract

The thin film phantom is a new type of ultrasound resolution test object. It is comprised of a thin planar substrate that is acoustically matched to the surrounding media. Precisely located scatterers on the surface of the substrate generate echo signals. We show that by vibrating the substrate in a suitable manner, an echo signal may be generated which simulates bidirectional flow. We demonstrate that a vibration of low amplitude at frequency f/sub 0/ produces a Doppler spectral signal at f/sub 0/ and -f/sub 0/, within the limits of aliasing. Furthermore, by driving the film with a bandlimited noise signal, we illustrate how a velocity distribution may be simulated. A time-varying flow velocity may be simulated by varying the noise bandwidth with time. Finally, using this technique we demonstrate a system that simulates an arterial flow pattern including its characteristic velocity distribution, in forward and reverse directions simultaneously.
用于血液流动模拟的薄膜模型
薄膜模体是一种新型的超声分辨率测试对象。它由与周围介质在声学上匹配的薄平面衬底组成。在衬底表面精确定位的散射体产生回波信号。我们表明,通过以适当的方式振动基材,可以产生模拟双向流动的回波信号。我们证明了频率为f/sub 0/的低振幅振动在混叠的限制内产生频率为f/sub 0/和-f/sub 0/的多普勒频谱信号。此外,通过用带限噪声信号驱动薄膜,我们说明了如何模拟速度分布。随时间变化的噪声带宽可以模拟时变的流速。最后,利用这种技术,我们演示了一个系统,模拟动脉流动模式,包括其特征速度分布,同时在正向和反向。
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