Gran Fredrik, Jensen Jørgen Arendt
Center for Fast Ultrasound Imaging, Ørsted.DTU, Tech. Univ. of Denmark, Lyngby.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Jan;55(1):12-23. doi: 10.1109/TUFFC.2008.613.
This paper describes a method for spatial encoding in synthetic transmit aperture ultrasound imaging. This allows several ultrasonic sources to be active simultaneously. The method is based on transmitting pseudorandom sequences to spatially encode the transmitters. The data can be decoded after only one transmission using the knowledge of the transmitted code sequences as opposed to other spatial encoding techniques, such as Hadamard or Golay encoding. This makes the method less sensitive to motion, and data can be acquired using fewer transmissions. The aim of this paper is to analyze the underlying theory and to test the feasibility in a physical system. The method has been evaluated in simulations using Field II in which the point-spread functions were simulated for different depths for a 7 MHz linear array transducer. A signal-to-noise ratio (SNR) simulation also was included in the study in which an improvement in SNR of approximately 1.5 dB was attained compared to the standard synthetic transmit aperture (STA) firing scheme. Considering the amount of energy transmitted, this value is low. A plausible explanation is given that is verified in simulation. The method also was tested in an experimental ultrasound scanner and compared to a synthetic transmit aperture ultrasound imaging scheme using a sinusoidal excitation. The performance of the proposed method was comparable to the reference with respect to axial and lateral resolution, but it displayed poorer contrast with sidelobe levels at approximately - 40 dB compared to the mainlobe.
本文描述了一种合成孔径超声成像中的空间编码方法。这使得多个超声源能够同时激活。该方法基于发送伪随机序列对发射器进行空间编码。与其他空间编码技术(如哈达玛编码或格雷编码)不同,利用所发送编码序列的知识,仅需一次发射后数据就能被解码。这使得该方法对运动不太敏感,并且可以用较少的发射次数采集数据。本文的目的是分析其基础理论并在物理系统中测试其可行性。该方法已在使用Field II的模拟中进行了评估,其中针对7 MHz线性阵列换能器在不同深度模拟了点扩散函数。该研究还包括一个信噪比(SNR)模拟,与标准合成孔径发射(STA)方案相比,信噪比提高了约1.5 dB。考虑到发射的能量,这个值较低。文中给出了一个合理的解释,并在模拟中得到了验证。该方法还在实验性超声扫描仪中进行了测试,并与使用正弦激励的合成孔径超声成像方案进行了比较。所提方法在轴向和横向分辨率方面的性能与参考方法相当,但与主瓣相比,其旁瓣水平约为 - 40 dB,对比度较差。