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Grating Lobe Suppression for Ultrasound Angle-Compounded Ultrafast Imaging

机译:用于超声角复合超速成像的光栅叶抑制

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The frame rate of ultrasound imaging (US) is determined by the imaging depth and the number of transmit/receive (T/R) events. One way to achieve an ultrafast frame rate is by reducing T/R events. This can be achieved by utilizing an angle-compounded ultrafast imaging (ACUI) method which utilizes planar wave fronts. Due to ultrafast imaging capability, quantitative tissue stiffness measurement and the full blood characterization could be realized. However, ACUI method suffers from grating lobes (GLs) occurred during multiple angle compounding. To suppress the production of GLs, we analyzed the beam pattern properties of the ACUI method and derived imaging parameter related to GL location. We then determined the receive aperture function that could most efficiently suppress GL production. The obtained receive beam pattern was found to have reduced side lobe levels. This is due to the aperture weighting function being convolved to the receive aperture function. As a result, GL production was effectively suppressed without sacrifice to frame rate. To verify the presented model and the proposed method, beam simulation was conducted and its results were compared to theoretical values. In addition, point target imaging simulation was conducted using Field II to visualize the performance of GL suppression. Simulation results demonstrated that the proposed method could successfully remove the interference caused by GLs while simultaneously preserving frame rate.
机译:超声成像(US)的帧速率由成像深度和发送/接收(T / R)事件的数量决定。实现超快帧速率的一种方法是减少T / R事件。这可以通过利用利用平面波前沿的角度复合的超快速成像(ACUI)方法来实现。由于超快成像能力,可以实现定量组织刚度测量和全血特征。然而,ACUI方法患有在多个角度复合期间发生光栅(GLS)。为了抑制GLS的生产,我们分析了与GL位置相关的ACUI方法的光束模式属性和导出的成像参数。然后,我们确定了最有效地抑制GL生产的接收光圈功能。发现得到的接收光束图案具有减少的侧凸水平。这是由于孔径加权函数被卷积到接收光圈功能。结果,无需牺牲帧速率,有效地抑制了GL生产。为了验证所提出的模型和所提出的方法,进行光束仿真,并将其结果与理论值进行比较。此外,使用Field II进行点目标成像模拟以可视化GL抑制的性能。仿真结果表明,该方法可以同时保留帧速率的同时成功消除由GLS引起的干扰。

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