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用于医学超声的二维阵列。

Two-dimensional arrays for medical ultrasound.

作者信息

Smith S W, Trahey G E, von Ramm O T

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27706.

出版信息

Ultrason Imaging. 1992 Jul;14(3):213-33. doi: 10.1177/016173469201400301.

DOI:10.1177/016173469201400301
PMID:1448889
Abstract

The design, fabrication and evaluation of two-dimensional transducer arrays are described for medical ultrasound imaging. A 4 x 32, 2.8 MHz array was developed to use new signal processing techniques for improved B-scan imaging including elevation focusing, phase correction and synthetic aperture imaging. Laboratory measurements from typical array elements showed 50 omega insertion loss of -56 dB, -6 dB fractional bandwidth of 43%, interelement crosstalk of -19 dB, and -6 dB pulse-echo angular response of 62 degrees. Simulations of pulse-echo beam plots have shown grating lobes 20 dB below the main lobe at +/- 7 degrees in the elevation direction. The complete 2-D array has been used for measurements of phase aberrations in breast, and the individual 32 element linear arrays have been used to obtain conventional B-scans. Several 16 x 16 arrays have also been developed for high speed volumetric imaging. These include 96 transmit elements and 32 receive channels. With a lambda/4 matching layer, laboratory measurements show 50 omega insertion loss of -72 dB, -6 dB fractional bandwidth of 63%, interelement crosstalk of -29 dB and -6 dB angular response of 25 degrees. Pulse-echo sensitivity was improved by 21 dB through the use of integrated circuit preamplifiers of high impedance mounted in the transducer handle. In vivo cardiac, abdominal, and obstetric B-scans with elevation focusing, as well as high speed C-scans, have been obtained with these 2-D arrays.

摘要

本文描述了用于医学超声成像的二维换能器阵列的设计、制造和评估。开发了一个4×32、2.8MHz的阵列,以采用新的信号处理技术来改善B扫描成像,包括仰角聚焦、相位校正和合成孔径成像。对典型阵列元件的实验室测量结果显示,50Ω插入损耗为-56dB,-6dB分数带宽为43%,阵元间串扰为-19dB,-6dB脉冲回波角响应为62度。脉冲回波波束图的模拟显示,在仰角方向上,±7度处的光栅旁瓣比主瓣低20dB。完整的二维阵列已用于测量乳房中的相位像差,单个32元线性阵列已用于获取传统的B扫描图像。还开发了几个16×16的阵列用于高速容积成像。这些阵列包括96个发射元件和32个接收通道。采用λ/4匹配层时,实验室测量结果显示,50Ω插入损耗为-72dB,-6dB分数带宽为63%,阵元间串扰为-29dB,-6dB角响应为25度。通过使用安装在换能器手柄中的高阻抗集成电路前置放大器,脉冲回波灵敏度提高了21dB。利用这些二维阵列已获得了具有仰角聚焦的体内心脏、腹部和产科B扫描图像,以及高速C扫描图像。

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