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Reducing the number of receiving channels using transmit-receive symmetry in synthetic transmit aperture imaging

机译:在合成发射孔径成像中使用发射-接收对称性减少接收通道的数量

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Synthetic transmit aperture (STA) imaging has been widely studied in ultrasound imaging. Usually the number of receiving channels is the same as the number of the array elements (N). When the number of receiving channels is large, such as the matrix array for 3D imaging, the system cost will be high due to the receiving electronics for each element. Therefore, it is desirable to reduce the number of receiving channels while keeping a large number of transmit channels. In this paper, we studied with Field II Hadamard-encoded synthetic transmit aperture imaging systems with about N/2, N/4 and N/8 receiving channels. There were N Hadamard-encoded transmission events for one frame of image. The pseudoinverse was applied to the acquired RF data to estimate the equivalent signal in the traditional STA. We found that applying the transmit-receive symmetry of RF signals can reduce the receiving channels by half without compromising image quality. We also compared different methods to encode the receivers when the receiving channels were reduced to about N/4 and N/8.
机译:合成透射孔径(STA)成像已在超声成像中得到了广泛的研究。通常,接收通道的数量与阵列元素的数量(N)相同。当接收通道的数量很大(例如用于3D成像的矩阵阵列)时,由于每个元素的接收电子设备,系统成本将很高。因此,期望在保持大量发送信道的同时减少接收信道的数量。在本文中,我们研究了具有大约N / 2,N / 4和N / 8接收通道的Field II Hadamard编码的合成发射孔径成像系统。一帧图像有N个Hadamard编码的传输事件。将伪逆应用于获取的RF数据,以估计传统STA中的等效信号。我们发现,应用射频信号的收发对称性可以将接收通道减少一半,而不会影响图像质量。当接收信道减少到大约N / 4和N / 8时,我们还比较了编码接收器的不同方法。

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