Biomedical Ultrasound Laboratory, Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai, India.
Biomedical Ultrasound Laboratory, Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai, India.
Ultrasonics. 2019 Jan;91:150-160. doi: 10.1016/j.ultras.2018.08.016. Epub 2018 Aug 21.
In this paper, a technique combining Diverging Beam with Synthetic Aperture Technique (DB-SAT) is demonstrated that utilizes only limited number of active elements yet provides better quality images at higher frame rates than possible with Conventional Focused Beamforming (CFB). The DB-SAT has been investigated in simulations and experiments on wire and tissue-mimicking phantoms, and the results are compared with routinely used CFB with Linear Array (CFB-LA). The estimated lateral resolution at the focal point was 0.41 mm and 0.34 mm for CFB-LA and DB-SAT, respectively, in simulations. These were estimated to be 0.78 mm and 0.71 mm, respectively, in experiments. Experimentally computed contrast resolution (contrast-to-noise ratio) for the cyst located at 60 mm depth were 0.50 (1.31 dB) and 0.58 (2.33 dB) for CFB-LA and DB-SAT, respectively. The frame-rate achieved by DB-SAT was 8 times and 2 times higher than that achieved by CFB-LA when transmit sub-apertures had an overlap 0% and 75%, respectively. Therefore, it can be concluded from the results that DB-SAT using 8 active transmit elements and 64 active receive elements yields better quality images at higher frame-rates than those obtained using CFB-LA with 64 active elements in transmit and receive. Since there is a reduction in the number of active transmit elements in the case of DB-SAT, it leads to a reduction in the overall system complexity.
本文展示了一种结合了发散波束与合成孔径技术(DB-SAT)的技术,该技术利用有限数量的有源元件,在比传统聚焦波束形成(CFB)更高的帧率下提供了更高质量的图像。在对金属丝和组织模拟体模的模拟和实验中,对 DB-SAT 进行了研究,并将其结果与常规使用的线性阵列(CFB-LA)进行了比较。在模拟中,CFB-LA 和 DB-SAT 在焦点处的估计横向分辨率分别为 0.41 mm 和 0.34 mm。在实验中,这两个值分别估计为 0.78 mm 和 0.71 mm。在实验中,位于 60 mm 深度处的囊肿的实验计算对比度分辨率(对比噪声比)分别为 0.50(1.31 dB)和 0.58(2.33 dB),对于 CFB-LA 和 DB-SAT。当发射子孔径的重叠度分别为 0%和 75%时,DB-SAT 实现的帧率比 CFB-LA 高 8 倍和 2 倍。因此,可以得出结论,在发射和接收中使用 64 个有源元件的 CFB-LA 相比,使用 8 个有源发射元件和 64 个有源接收元件的 DB-SAT 可以以更高的帧率获得更高质量的图像。由于在 DB-SAT 的情况下,有源发射元件的数量减少,因此整体系统复杂性降低。