利用无旁瓣图像评估旁瓣估计精度

M. Jeong, S. Kwon, M. Choi
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引用次数: 2

摘要

为了有效抑制超声成像中的旁瓣,有必要对成像点旁瓣引起的信号幅度进行量化。在接收波束形成之前,将接收到的信道数据建模为具有不同空间频率的正弦波的和,这取决于入射到接收阵列的角度。在构成信道数据的信号中,由于主瓣的信号具有直流频率,而由于副瓣的信号具有与入射角近似成比例的空间频率。对接收到的信道数据进行零填充后的傅里叶变换,可以准确地估计出旁瓣。在超声图像的计算机模拟中,我们产生随机散射体返回的超声回波。由于我们已经知道了所有反射器的位置,我们可以将反射信号从主瓣和副瓣处分离出来,这样就可以准确地计算出每个成像点的真实副瓣电平。主瓣图像可以作为评估副瓣抑制滤波器的金标准。真实的和估计的旁瓣可以用于超声图像的旁瓣抑制滤波。在5mhz线阵传感器的64通道聚焦系统中,通过计算机模拟获得了包含导线和囊肿的物体的常规、真实和估计的旁瓣图像。在低回声囊肿中,估计的侧叶与真实的侧叶几乎相同。结果表明,估计的旁瓣可以有效地用于旁瓣抑制滤波。因此,从信道数据中定量估计旁瓣,提高旁瓣抑制滤波器在超声成像中的性能是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Side Lobe Estimation Accuracy Using Side Lobe Free Image
In order to effectively suppress side lobes in ultrasound imaging, it is necessary to quantify the signal amplitude due to side lobes at imaging points. The received channel data before receive beamforming are modeled as a sum of sinusoids having different spatial frequencies depending on the angle incident on a receiving array. In the signal constituting the channel data, the signal due to the main lobe has a DC frequency, whereas the signal due to the side lobe has a spatial frequency that is approximately proportional to the incident angle. Taking the Fourier transform of the received channel data after zero padding, we can accurately estimate side lobes. In computer simulation of ultrasound images, we generate ultrasonic echoes returned from random scatterers. Because we already know the position of all reflectors, we can separate the signals reflected due to the main and side lobes so that the true side lobe level at each imaging point can be computed accurately. The main lobe image can be used as a gold standard for assessing a side lobe suppression filter. The true and estimated side lobes can be used in side lobe suppression filtering of ultrasound images. We obtained the conventional, true side lobe, and estimated side lobe images for an object containing a wire and a cyst using computer simulation in a 64 channel focusing system with a 5 MHz linear array transducer. In the hypoechoic cyst, the estimated side lobe is almost the same as the true side lobe. We confirmed that the estimated side lobe can effectively be used in side lobe suppression filtering. Therefore, it is feasible to quantitatively estimate side lobes from the channel data, and improve the performance of the side lobe suppression filter in ultrasound imaging.
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