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通过人体组织进行超声聚焦像差模拟与校正

Simulation of ultrasonic focus aberration and correction through human tissue.

作者信息

Tabei Makoto, Mast T Douglas, Waag Robert C

机构信息

Department of Electrical and Computer Engineering, University of Rochester, Rochester, New York 14627, USA.

出版信息

J Acoust Soc Am. 2003 Feb;113(2):1166-76. doi: 10.1121/1.1531986.

Abstract

Ultrasonic focusing in two dimensions has been investigated by calculating the propagation of ultrasonic pulses through cross-sectional models of human abdominal wall and breast. Propagation calculations used a full-wave k-space method that accounts for spatial variations in density, sound speed, and frequency-dependent absorption and includes perfectly matched layer absorbing boundary conditions. To obtain a distorted receive wavefront, propagation from a point source through the tissue path was computed. Receive focusing used an angular spectrum method. Transmit focusing was accomplished by propagating a pressure wavefront from a virtual array through the tissue path. As well as uncompensated focusing, focusing that employed time-shift compensation and time-shift compensation after backpropagation was investigated in both transmit and receive and time reversal was investigated for transmit focusing in addition. The results indicate, consistent with measurements, that breast causes greater focus degradation than abdominal wall. The investigated compensation methods corrected the receive focus better than the transmit focus. Time-shift compensation after backpropagation improved the focus from that obtained using time-shift compensation alone but the improvement was less in transmit focusing than in receive focusing. Transmit focusing by time reversal resulted in lower sidelobes but larger mainlobes than the other investigated transmit focus compensation methods.

摘要

通过计算超声脉冲在人体腹壁和乳房横截面模型中的传播,对二维超声聚焦进行了研究。传播计算采用全波k空间方法,该方法考虑了密度、声速和频率相关吸收的空间变化,并包括完全匹配层吸收边界条件。为了获得失真的接收波前,计算了从点源通过组织路径的传播。接收聚焦采用角谱方法。发射聚焦是通过从虚拟阵列传播压力波前通过组织路径来实现的。除了未补偿聚焦外,还研究了在发射和接收中采用时移补偿以及反向传播后的时移补偿的聚焦,此外还研究了发射聚焦的时间反转。结果表明,与测量结果一致,乳房比腹壁导致更大的聚焦退化。所研究的补偿方法对接收聚焦的校正比对发射聚焦的校正更好。反向传播后的时移补偿比单独使用时移补偿得到的聚焦有所改善,但发射聚焦的改善小于接收聚焦。与其他研究的发射聚焦补偿方法相比,时间反转的发射聚焦导致旁瓣更低但主瓣更大。

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