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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Design and characterization of a real-time angular scatter ultrasound imaging system
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Design and characterization of a real-time angular scatter ultrasound imaging system

机译:实时角散射超声成像系统的设计与表征

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A novel ultrasound imaging system has been implemented using two 32-element linear phased array transducers oriented at an angle of 40/spl deg/ to one another. The system simultaneously acquires and displays, in real time, a conventional backscatter image and an angular scatter image formed using side-scattered echoes from the same region. The design of the system is shaped by the influence of the scatter angle on the spatial resolution and receive signal processing requirements of the instrument. The subtended scatter angles are restricted to values <90/spl deg/ to ensure that the angular scatter receiver effectively tracks the transmitted pulse and that the spatial resolution in the two images is comparable. The system is sufficiently tolerant of small variations in the average acoustic velocity of the medium to guarantee reliable pulse tracking in biomedical applications. The angular scatter signal magnitude is significantly weighted by the directivity of the receive array. The imaging system will most effectively demonstrate angular variations in scattering at scatter angles between 125 and 145/spl deg/, where the angular response of the receiver is near its peak.
机译:一种新颖的超声成像系统已经使用两个相互成40 / spl度/角度定向的32个元素的线性相控阵换能器实现。该系统同时获取并实时显示常规反向散射图像和使用来自同一区域的侧向散射回波形成的角向散射图像。系统的设计受散射角对空间分辨率的影响和对仪器接收信号处理要求的影响。将对向的散射角限制为<90 / spl deg /,以确保角度散射接收器有效跟踪发射的脉冲,并且确保两个图像中的空间分辨率可比。该系统足够耐受介质平均声速的微小变化,以确保在生物医学应用中可靠的脉冲跟踪。接收器的方向性大大地加权了角散射信号的大小。该成像系统将最有效地显示散射角在125和145 / spl度/之间的散射角变化,其中接收器的角响应接近其峰值。

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