Prado Vander Teixeira, Higuti Ricardo Tokio, Kitano Cláudio, Martínez-Graullera Óscar
IEEE Trans Ultrason Ferroelectr Freq Control. 2014 Jul;61(7):1204-15. doi: 10.1109/TUFFC.2014.3019.
A method for reflector detection, based on the instantaneous phase of the aperture data for ultrasonic images, is proposed. The instantaneous phase (IP) image is obtained by replacing the amplitude information by the instantaneous phase in the delay-and-sum (DAS) beamforming. From the analysis of the IP image, a threshold level is defined in terms of the number of signals used for imaging. This threshold is applied to the IP image, resulting in a two-level image which gives a statistical indication of whether the pixels of a region in the image are related to a reflector or noise/artifacts. Because the proposed method uses only the instantaneous phase of the signals, it is less sensitive to attenuation than conventional DAS amplitude images. The point spread function of a 32-element array with half-wavelength pitch at 5 MHz in water is simulated and the reflector is detected for signal-to-noise ratio values larger than -29.6 dB. A phantom and an aluminum plate with artificial defects are tested with the proposed technique, using linear arrays of 64 and 16 elements, respectively. When compared with DAS amplitude images and with two-level images obtained by thresholding the amplitude images using empirical threshold values, the proposed technique reduced artifacts and dead zone, and detected all reflectors, increasing reflectors' detectability and decreasing the occurrence of false indication of reflectors. The proposed technique can be used as additional information for amplitude image analysis, with the advantages that it does not need time-gain compensation and that it considers an objective threshold value.
提出了一种基于超声图像孔径数据瞬时相位的反射体检测方法。通过在延迟求和(DAS)波束形成中用瞬时相位替换幅度信息来获得瞬时相位(IP)图像。通过对IP图像的分析,根据用于成像的信号数量定义了一个阈值水平。将该阈值应用于IP图像,得到一个二值图像,该图像给出了图像中一个区域的像素是与反射体相关还是与噪声/伪像相关的统计指示。由于所提出的方法仅使用信号的瞬时相位,因此它对衰减的敏感度低于传统的DAS幅度图像。对水中5 MHz时半波长间距的32元阵列的点扩散函数进行了模拟,并且在信噪比大于-29.6 dB时检测到了反射体。分别使用64元和16元的线性阵列,用所提出的技术对带有人工缺陷的仿体和铝板进行了测试。与DAS幅度图像以及通过使用经验阈值对幅度图像进行阈值处理得到的二值图像相比,所提出的技术减少了伪像和盲区,并且检测到了所有反射体,提高了反射体的可检测性并减少了反射体误指示的发生。所提出的技术可以用作幅度图像分析的附加信息,其优点是不需要时间增益补偿并且它考虑了一个客观的阈值。