Shi W T, Forsberg F, Hall A L, Chiao R Y, Liu J B, Miller S, Thomenius K E, Wheatley M A, Goldberg B B
Department of Radiology, and Jefferson Ultrasound Education and Research Institute, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Ultrason Imaging. 1999 Apr;21(2):79-94. doi: 10.1177/016173469902100201.
The subharmonic emission from insonified contrast microbubbles was used to create a new imaging modality called Subharmonic Imaging. The subharmonic response of contrast microbubbles to ultrasound pulses was first investigated for determining adequate acoustic transmit parameters. Subharmonic A-lines and gray scale images were then obtained using a laboratory pulse-echo system in vitro and a modified ultrasound scanner in vivo. Excellent suppression of all backscattered signals other than from contrast microbubbles was achieved for subharmonic A-lines in vitro while further optimization is required for in vivo gray scale subharmonic images.
用被超声照射的造影微泡的次谐波发射创建了一种名为次谐波成像的新成像模式。首先研究了造影微泡对超声脉冲的次谐波响应,以确定合适的声学发射参数。然后使用实验室体外脉冲回波系统和体内改良超声扫描仪获得次谐波A线和灰度图像。体外次谐波A线能出色地抑制除造影微泡之外的所有反向散射信号,而体内灰度次谐波图像则需要进一步优化。