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Measurement of shear wave velocity for elastography using conventional B-mode scan of focused ultrasound

机译:使用聚焦超声的常规B型扫描测量弹性成像的剪切波速度

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A measurement method of shear wave (SW) velocity for elastography by using a conventional B-mode scan with a focused ultrasound system is demonstrated in this paper. In the B-mode scan, there is a scanning time delay among the sequential A-mode measurements. This scanning time delay causes an artificial spatial frequency difference between the induced SW and undesired SWs reflected at tissue boundaries. Therefore, the reflected SW can be removed from the measured SWs using a spatial frequency filter. In our previous study, the SW propagating in the same direction as the B-mode scanning direction was used to measure the SW velocity. In such configuration, a prior knowledge was required whether the values of the SW velocity of a specimen are greater or smaller than the B-mode scanning speed, which may not be known for an arbitrary specimen. In order to address such shortcoming, the measurement configuration was modified in this paper so that such prior knowledge is no longer required. The method was verified by using a soft tissue mimicking phantom with a relatively stiffer cylindrical inclusion. Image contrast between the two different materials was successfully observed in the SW velocity map obtained.
机译:本文介绍了一种通过聚焦超声系统使用常规B模式扫描的弹性成像剪切波(SW)速度的测量方法。在B模式扫描中,连续的A模式测量之间存在扫描时间延迟。该扫描时间延迟导致在组织边界处反射的诱导的SW和不期望的SW之间存在人为的空间频率差异。因此,可以使用空间频率滤波器将反射的SW从测得的SW中移除。在我们之前的研究中,沿与B模式扫描方向相同的方向传播的SW用于测量SW速度。在这样的配置中,需要先验知识,即样本的SW速度的值是大于还是小于B模式扫描速度,这对于任意样本可能是未知的。为了解决这样的缺点,在本文中修改了测量配置,因此不再需要这种先验知识。该方法已通过使用具有相对较硬的圆柱形夹杂物的模仿假体的软组织进行验证。在获得的SW速度图中成功观察到了两种不同材料之间的图像对比度。

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