通过实时估计和校正波前到达时间误差,提高体内腹部图像质量

K. W. Rigby, C. Chalek, B. Haider, R. Lewandowski, M. O’Donnell, L. Smith, D. Wildes
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引用次数: 45

摘要

声音的速度随组织类型的不同而变化,但商用超声成像仪假定它是恒定的。腹部脂肪和肌肉层的声速变化被广泛认为是一些患者图像对比度和分辨率差的主要原因。最简单的腹壁模型假定它在超声波前增加了一个空间变化的时间延迟。我们描述了一个由GE LOGIQ 700成像仪连接到多处理器计算机组成的自适应成像系统。通过将每个信道信号与波束和信号相关联来估计每个波束形成信道的到达时间误差,用于校正成像仪在图像帧速率下的发送和接收波束形成时间延迟。多排换能器提供波前到达时间误差的二维采样。经过波束形成时间延迟校正后,我们观察到健康男性志愿者的腹部图像有显著改善,包括血管对比度增强,肝组织亮度增强,肾包膜和脾边界清晰度提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved in vivo abdominal image quality using real-time estimation and correction of wavefront arrival time errors
The speed of sound varies with tissue type, yet commercial ultrasound imagers assume it is constant. Sound speed variation in abdominal fat and muscle layers is widely believed to be largely responsible for poor image contrast and resolution in some patients. The simplest model of the abdominal wall assumes that it adds a spatially varying time delay to the ultrasound wavefront. We describe an adaptive imaging system consisting of a GE LOGIQ 700 imager connected to a multi-processor computer. Arrival time errors for each beamforming channel, estimated by correlating each channel signal with the beamsum signal, are used to correct the imager's transmit and receive beamforming time delays at the image frame rate. A multi-row transducer provides two dimensional sampling of wavefront arrival time errors. After beamforming time delay correction, we observe significant improvement in abdominal images of healthy male volunteers, including increased contrast of blood vessels, increased brightness of liver tissue, and improved definition of the renal capsule and splenic boundary.
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