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3-D imaging using row???column-addressed arrays with integrated apodization - part i: apodization design and line element beamforming

机译:使用具有集成变迹的行列列阵列的3D成像-第一部分:变迹设计和线元波束成形

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This paper investigates the effect of transducerintegrated apodization in row???column-addressed arrays and presents a beamforming approach specific for such arrays. Row???column addressing 2-D arrays greatly reduces the number of active channels needed to acquire a 3-D volume. A disadvantage of row???column-addressed arrays is an apparent ghost effect in the point spread function caused by edge waves. This paper investigates the origin of the edge waves and the effect of introducing an integrated apodization to reduce the ghost echoes. The performance of a λ/2-pitch 5-MHz 128 + 128 row???column-addressed array with different apodizations is simulated. A Hann apodization is shown to decrease imaging performance away from the center axis of the array because of a decrease in main lobe amplitude. Instead, a static roll-off apodization region located at the ends of the line elements is proposed. In simulations, the peak ghost echo intensity of a scatterer at (x,y, z) = (8, 3, 30) mm was decreased by 43 dB by integrating roll-off apodization into the array. The main lobe was unaffected by the apodization. Simulations of a 3-mm-diameter anechoic blood vessel at 30 mm depth showed that applying the transducer-integrated apodization increased the apparent diameter of the vessel from 2.0 mm to 2.4 mm, corresponding to an increase from 67% to 80% of the true vessel diameter. The line element beamforming approach is shown to be essential for achieving correct time-of-flight calculations, and hence avoid geometrical distortions. In Part II of this work, experimental results from a capacitive micromachined ultrasonic transducer with integrated roll-off apodization are given to validate the effect of integrating apodization into the line elements.
机译:本文研究了在行排成列的阵列中换能器整合的变迹的效果,并提出了一种针对这种阵列的波束成形方法。行列寻址的2-D阵列大大减少了获取3-D体积所需的活动通道的数量。行列寻址阵列的缺点是在边缘波引起的点扩展函数中明显的重影效应。本文研究了边缘波的起源以及引入集成切趾处理以减少幻像回波的效果。模拟了具有不同切趾的λ/ 2间距5MHz 128 + 128行???列寻址阵列的性能。由于主瓣振幅的减小,汉恩切趾法显示会降低远离阵列中心轴的成像性能。取而代之的是,提出了位于线元件的端部的静态滚降变迹区域。在模拟中,通过将滚降切趾整合到阵列中,在(x,y,z)=(8、3、30)mm处的散射体的重影回波强度峰值降低了43 dB。主瓣不受切趾的影响。在30毫米深度处对直径为3毫米的无回声血管进行仿真,结果表明,应用换能器集成的切趾法可以将血管的视在直径从2.0毫米增加到2.4毫米,相当于真实直径从67%增加到80%血管直径。线元波束成形方法对于实现正确的飞行时间计算至关重要,因此可以避免几何变形。在这项工作的第二部分中,给出了具有集成滚降切趾的电容式微加工超声换能器的实验结果,以验证将切趾整合到线元中的效果。

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