Yen Jesse T, Smith Stephen W
Biomedical Engineering Department, the University of Southern California, Los Angeles, CA, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2004 Feb;51(2):216-26.
In previous work, we developed two generations of a real-time rectilinear volumetric scanner operating at 5 MHz for abdominal, breast, or vascular imaging using a Mills cross two-dimensional (2-D) array and a rectilinear periodic 2-D array. To improve spatial resolution performance and sensitivity, we developed a new design using 4:1 receive mode multiplexing. With 4:1 multiplexing, the new 65,000 element 2-D array has 4 x 256 = 1024 receivers so that 256 receivers can be used on any image line. The two major benefits of using receive mode multiplexing are an increase in receive sensitivity due to a greater number of receive elements, and a decrease in grating lobe and clutter levels due to increased receive element density. Theoretical simulations and analysis show an increase of about 13 dB in sensitivity compared to our previous work. With these encouraging results, a new 65,000 element 5-MHz, 2-D array having 1024 receivers and 169 transmitters was prototyped. In addition, the multiplexer and control circuitry were designed, built, and interfaced with both the transducer and volumetric scanner. Images of tissue-mimicking phantoms and in vivo targets were obtained. Using a spherical cyst phantom, experimental results showed a +12 dB improvement in signal-to-noise ratio and a +6 dB improvement in contrast compared to our previous work.
在之前的工作中,我们开发了两代实时直线容积扫描仪,其工作频率为5MHz,用于腹部、乳腺或血管成像,采用了米尔斯十字二维(2-D)阵列和直线周期性二维阵列。为了提高空间分辨率性能和灵敏度,我们采用4:1接收模式复用技术开发了一种新设计。通过4:1复用,新的65000阵元二维阵列有4×256 = 1024个接收器,这样在任何图像线上都可以使用256个接收器。使用接收模式复用的两个主要优点是,由于接收元件数量增加,接收灵敏度提高;以及由于接收元件密度增加,光栅瓣和杂波水平降低。理论模拟和分析表明,与我们之前的工作相比,灵敏度提高了约13dB。基于这些令人鼓舞的结果,制作了一个新的具有1024个接收器和169个发射器的65000阵元5MHz二维阵列原型。此外,还设计、制造了复用器和控制电路,并使其与换能器和容积扫描仪相连接。获得了组织模拟体模和体内目标的图像。使用球形囊肿体模,实验结果表明,与我们之前的工作相比,信噪比提高了12dB,对比度提高了6dB。