Gong Ping, Kolios Michael C, Xu Yuan
IEEE Trans Ultrason Ferroelectr Freq Control. 2015 Oct;62(10):1745-56. doi: 10.1109/TUFFC.2015.007005.
Synthetic transmit aperture (STA) imaging systems usually have a lower SNR compared with conventional Bmode ultrasound systems because only one or a small number of elements are selected for each transmission in STA. Here we propose delay-encoded synthetic transmit aperture (DE-STA) imaging to encode all the transmission elements to increase the SNR of the pre-beamformed RF signals. The encoding scheme is similar to the Hadamard encoding. However, in each transmission of DE-STA imaging, selected transmitting elements are delayed by a half period of the ultrasound wave relative to the rest transmitting elements, rather than using a pulse inversion as in the Hadamard encoding sequence. After all the transmission events, a decoding process in the temporal frequency domain is applied to the acquired RF signals to recover the equivalent traditional STA signals with a better SNR. The proposed protocol is tested with simulated data (using Field II) and experimental data acquired with a commercial linear array imaging system (Ultrasonix RP). The results from both the simulations and the experiments demonstrate increased SNR of pre-beamformed RF signals and improved image quality in terms of peak signal-to-noise ratio (PSNR), resolution and contrast-to-noise ratio compared with traditional STA. The lateral resolution (as assessed by a wire target) of DESTA imaging is improved by 28% and the PSNR of the wire is increased by 7 dB, respectively, compared with traditional STA imaging. The proposed image reconstruction framework can also be extended to other transmission protocols.
与传统B模式超声系统相比,合成发射孔径(STA)成像系统的信噪比通常较低,因为在STA中每次发射仅选择一个或少数几个元件。在此,我们提出延迟编码合成发射孔径(DE-STA)成像,对所有发射元件进行编码,以提高预波束形成射频信号的信噪比。该编码方案类似于哈达玛编码。然而,在DE-STA成像的每次发射中,相对于其余发射元件,选定的发射元件延迟超声波的半个周期,而不是像哈达玛编码序列那样使用脉冲反转。在所有发射事件之后,对采集到的射频信号在时间频域中应用解码过程,以恢复具有更好信噪比的等效传统STA信号。所提出的方案通过模拟数据(使用Field II)和使用商用线性阵列成像系统(Ultrasonix RP)采集的实验数据进行测试。模拟和实验结果均表明,与传统STA相比,预波束形成射频信号的信噪比提高,在峰值信噪比(PSNR)、分辨率和对比度噪声比方面图像质量得到改善。与传统STA成像相比,DE-STA成像的横向分辨率(通过金属丝靶评估)提高了28%,金属丝的PSNR提高了7 dB。所提出的图像重建框架也可以扩展到其他发射协议。