Lu J Y, He S
Department of Bioengineering, The University of Toledo, OH 43606-3390, USA.
Ultrasound Med Biol. 2000 Jan;26(1):143-52. doi: 10.1016/s0301-5629(99)00113-1.
A high frame-rate (HFR) imaging method (about 3750 frames/s for imaging of biological soft tissues at a depth of 200 mm) has been developed recently with limited diffraction beams. This method uses the fast Fourier transform (FFT) and inverse fast Fourier transform (IFFT) to construct images, and can be implemented with simple and inexpensive hardware, compared to the conventional delay-and-sum method where a digital beam former is usually used. In this paper, phase aberration effects are studied for both the high frame rate and the conventional methods by adding random phase shifts to echo signals obtained from an experiment. In the study, two broadband linear arrays were used to construct images of an ATS 539 tissue-equivalent phantom that has a frequency-dependent attenuation of about 0.5 dB/MHz/cm. The first array has 48 elements, a central frequency of 2.25 MHz, an aperture of 18.288 mm, and a width of 12.192 mm in elevation. The second has 64 elements, a central frequency of 2.5 MHz, and a dimension of 38.4 mm x 10 mm. The-6dB pulse-echo bandwidth of both arrays is about 40% of their center frequencies. Radiofrequency (RF) signals were digitized at 20 mega samples/s at a 12-bit resolution to construct images. Results show that phase aberration has about the same effect on both methods in terms of image resolution and contrast, although the high frame-rate method can be implemented with a simpler system.
最近开发了一种高帧率(HFR)成像方法(对于深度为200mm的生物软组织成像,帧率约为3750帧/秒),其使用有限衍射光束。该方法利用快速傅里叶变换(FFT)和逆快速傅里叶变换(IFFT)来构建图像,并且与通常使用数字波束形成器的传统延迟求和方法相比,可以用简单且廉价的硬件来实现。在本文中,通过对从实验获得的回波信号添加随机相移,研究了高帧率方法和传统方法的相位像差效应。在该研究中,使用两个宽带线性阵列来构建ATS 539组织等效体模的图像,该体模具有约0.5dB/MHz/cm的频率依赖性衰减。第一个阵列有48个阵元,中心频率为2.25MHz,孔径为18.288mm,仰角宽度为12.192mm。第二个阵列有64个阵元,中心频率为2.5MHz,尺寸为38.4mm×10mm。两个阵列的-6dB脉冲回波带宽约为其中心频率的40%。射频(RF)信号以20兆采样/秒的速率进行数字化,分辨率为12位,以构建图像。结果表明,尽管高帧率方法可以用更简单的系统实现,但在图像分辨率和对比度方面,相位像差对两种方法的影响大致相同。